Merge pull request #3376 from TheAnonymous/devel
Added examples in documenation for add del delete repr insert sizeof high low
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@ -221,11 +221,21 @@ proc high*[T](x: T): T {.magic: "High", noSideEffect.}
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## the highest possible value of an ordinal value `x`. As a special
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## the highest possible value of an ordinal value `x`. As a special
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## semantic rule, `x` may also be a type identifier.
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## semantic rule, `x` may also be a type identifier.
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## ``high(int)`` is Nim's way of writing `INT_MAX`:idx: or `MAX_INT`:idx:.
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## ``high(int)`` is Nim's way of writing `INT_MAX`:idx: or `MAX_INT`:idx:.
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##
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## .. code-block:: nim
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## var arr = [1,2,3,4,5,6,7]
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## high(arr) #=> 6
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## high(2) #=> 9223372036854775807
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proc low*[T](x: T): T {.magic: "Low", noSideEffect.}
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proc low*[T](x: T): T {.magic: "Low", noSideEffect.}
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## returns the lowest possible index of an array, a sequence, a string or
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## returns the lowest possible index of an array, a sequence, a string or
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## the lowest possible value of an ordinal value `x`. As a special
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## the lowest possible value of an ordinal value `x`. As a special
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## semantic rule, `x` may also be a type identifier.
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## semantic rule, `x` may also be a type identifier.
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##
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## .. code-block:: nim
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## var arr = [1,2,3,4,5,6,7]
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## high(arr) #=> 0
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## high(2) #=> -9223372036854775808
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type
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type
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range*{.magic: "Range".}[T] ## Generic type to construct range types.
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range*{.magic: "Range".}[T] ## Generic type to construct range types.
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@ -584,6 +594,10 @@ proc sizeof*[T](x: T): int {.magic: "SizeOf", noSideEffect.}
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## its usage is discouraged - using ``new`` for the most cases suffices
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## its usage is discouraged - using ``new`` for the most cases suffices
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## that one never needs to know ``x``'s size. As a special semantic rule,
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## that one never needs to know ``x``'s size. As a special semantic rule,
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## ``x`` may also be a type identifier (``sizeof(int)`` is valid).
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## ``x`` may also be a type identifier (``sizeof(int)`` is valid).
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##
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## .. code-block:: nim
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## sizeof('A') #=> 1
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## sizeof(2) #=> 8
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when defined(nimtypedescfixed):
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when defined(nimtypedescfixed):
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proc sizeof*(x: typedesc): int {.magic: "SizeOf", noSideEffect.}
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proc sizeof*(x: typedesc): int {.magic: "SizeOf", noSideEffect.}
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@ -705,12 +719,22 @@ template excl*[T](s: var set[T], flags: set[T]) =
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proc card*[T](x: set[T]): int {.magic: "Card", noSideEffect.}
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proc card*[T](x: set[T]): int {.magic: "Card", noSideEffect.}
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## returns the cardinality of the set ``x``, i.e. the number of elements
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## returns the cardinality of the set ``x``, i.e. the number of elements
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## in the set.
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## in the set.
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##
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## .. code-block:: nim
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## var i = {1,2,3,4}
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## card(i) #=> 4
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proc ord*[T](x: T): int {.magic: "Ord", noSideEffect.}
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proc ord*[T](x: T): int {.magic: "Ord", noSideEffect.}
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## returns the internal int value of an ordinal value ``x``.
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## returns the internal int value of an ordinal value ``x``.
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##
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## .. code-block:: nim
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## ord('A') #=> 65
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proc chr*(u: range[0..255]): char {.magic: "Chr", noSideEffect.}
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proc chr*(u: range[0..255]): char {.magic: "Chr", noSideEffect.}
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## converts an int in the range 0..255 to a character.
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## converts an int in the range 0..255 to a character.
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##
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## .. code-block:: nim
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## chr(65) #=> A
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# --------------------------------------------------------------------------
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# --------------------------------------------------------------------------
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# built-in operators
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# built-in operators
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@ -1315,6 +1339,10 @@ proc add *[T](x: var seq[T], y: openArray[T]) {.noSideEffect.} =
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## containers should also call their adding proc `add` for consistency.
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## containers should also call their adding proc `add` for consistency.
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## Generic code becomes much easier to write if the Nim naming scheme is
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## Generic code becomes much easier to write if the Nim naming scheme is
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## respected.
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## respected.
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##
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## .. code-block:: nim
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## var s: seq[string] = @["test2","test2"]
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## s.add("test") #=> @[test2, test2, test]
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let xl = x.len
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let xl = x.len
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setLen(x, xl + y.len)
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setLen(x, xl + y.len)
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for i in 0..high(y): x[xl+i] = y[i]
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for i in 0..high(y): x[xl+i] = y[i]
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@ -1329,6 +1357,10 @@ proc shallowCopy*[T](x: var T, y: T) {.noSideEffect, magic: "ShallowCopy".}
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proc del*[T](x: var seq[T], i: Natural) {.noSideEffect.} =
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proc del*[T](x: var seq[T], i: Natural) {.noSideEffect.} =
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## deletes the item at index `i` by putting ``x[high(x)]`` into position `i`.
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## deletes the item at index `i` by putting ``x[high(x)]`` into position `i`.
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## This is an O(1) operation.
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## This is an O(1) operation.
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##
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## .. code-block:: nim
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## var i = @[1,2,3,4,5]
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## i.del(2) #=> @[1, 2, 5, 4]
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let xl = x.len - 1
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let xl = x.len - 1
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shallowCopy(x[i], x[xl])
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shallowCopy(x[i], x[xl])
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setLen(x, xl)
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setLen(x, xl)
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@ -1336,6 +1368,10 @@ proc del*[T](x: var seq[T], i: Natural) {.noSideEffect.} =
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proc delete*[T](x: var seq[T], i: Natural) {.noSideEffect.} =
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proc delete*[T](x: var seq[T], i: Natural) {.noSideEffect.} =
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## deletes the item at index `i` by moving ``x[i+1..]`` by one position.
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## deletes the item at index `i` by moving ``x[i+1..]`` by one position.
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## This is an O(n) operation.
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## This is an O(n) operation.
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##
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## .. code-block:: nim
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## var i = @[1,2,3,4,5]
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## i.delete(2) #=> @[1, 2, 4, 5]
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template defaultImpl =
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template defaultImpl =
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let xl = x.len
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let xl = x.len
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for j in i..xl-2: shallowCopy(x[j], x[j+1])
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for j in i..xl-2: shallowCopy(x[j], x[j+1])
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@ -1351,6 +1387,10 @@ proc delete*[T](x: var seq[T], i: Natural) {.noSideEffect.} =
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proc insert*[T](x: var seq[T], item: T, i = 0.Natural) {.noSideEffect.} =
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proc insert*[T](x: var seq[T], item: T, i = 0.Natural) {.noSideEffect.} =
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## inserts `item` into `x` at position `i`.
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## inserts `item` into `x` at position `i`.
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##
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## .. code-block:: nim
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## var i = @[1,2,3,4,5]
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## i.insert(2,4) #=> @[1, 2, 3, 4, 2, 5]
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template defaultImpl =
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template defaultImpl =
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let xl = x.len
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let xl = x.len
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setLen(x, xl+1)
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setLen(x, xl+1)
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@ -1371,6 +1411,12 @@ proc repr*[T](x: T): string {.magic: "Repr", noSideEffect.}
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## takes any Nim variable and returns its string representation. It
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## takes any Nim variable and returns its string representation. It
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## works even for complex data graphs with cycles. This is a great
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## works even for complex data graphs with cycles. This is a great
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## debugging tool.
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## debugging tool.
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##
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## .. code-block:: nim
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## var s: seq[string] = @["test2","test2"]
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## var i = @[1,2,3,4,5]
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## repr(s) #=> 0x1055eb050[0x1055ec050"test2", 0x1055ec078"test2"]
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## repr(i) #=> 0x1055ed050[1, 2, 3, 4, 5]
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type
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type
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ByteAddress* = int
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ByteAddress* = int
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