See IO#read
.
Reset the scan pointer (index 0) and clear matching data.
Returns the subgroups in the most recent match (not including the full match). If nothing was priorly matched, it returns nil.
s = StringScanner.new("Fri Dec 12 1975 14:39") s.scan(/(\w+) (\w+) (\d+) /) # -> "Fri Dec 12 " s.captures # -> ["Fri", "Dec", "12"] s.scan(/(\w+) (\w+) (\d+) /) # -> nil s.captures # -> nil
Returns true if the method is event.
tobj = WIN32OLE_TYPE.new('Microsoft Excel 9.0 Object Library', 'Workbook') method = WIN32OLE_METHOD.new(tobj, 'SheetActivate') puts method.event? # => true
Returns true if argument is return value.
tobj = WIN32OLE_TYPE.new('DirectX 7 for Visual Basic Type Library', 'DirectPlayLobbyConnection') method = WIN32OLE_METHOD.new(tobj, 'GetPlayerShortName') param = method.params[0] puts "#{param.name} #{param.retval?}" # => name true
Rebuilds the hash based on the current hash values for each key. If values of key objects have changed since they were inserted, this method will reindex hsh. If Hash#rehash
is called while an iterator is traversing the hash, a RuntimeError
will be raised in the iterator.
a = [ "a", "b" ] c = [ "c", "d" ] h = { a => 100, c => 300 } h[a] #=> 100 a[0] = "z" h[a] #=> nil h.rehash #=> {["z", "b"]=>100, ["c", "d"]=>300} h[a] #=> 100
Returns a new hash consisting of entries for which the block returns false.
If no block is given, an enumerator is returned instead.
h = { "a" => 100, "b" => 200, "c" => 300 } h.reject {|k,v| k < "b"} #=> {"b" => 200, "c" => 300} h.reject {|k,v| v > 100} #=> {"a" => 100}
Equivalent to Hash#delete_if
, but returns nil
if no changes were made.
Returns a new hash created by using hsh’s values as keys, and the keys as values. If a key with the same value already exists in the hsh, then the last one defined will be used, the earlier value(s) will be discarded.
h = { "n" => 100, "m" => 100, "y" => 300, "d" => 200, "a" => 0 } h.invert #=> {0=>"a", 100=>"m", 200=>"d", 300=>"y"}
If there is no key with the same value, Hash#invert
is involutive.
h = { a: 1, b: 3, c: 4 } h.invert.invert == h #=> true
The condition, no key with the same value, can be tested by comparing the size of inverted hash.
# no key with the same value h = { a: 1, b: 3, c: 4 } h.size == h.invert.size #=> true # two (or more) keys has the same value h = { a: 1, b: 3, c: 1 } h.size == h.invert.size #=> false
Replaces the contents of hsh with the contents of other_hash.
h = { "a" => 100, "b" => 200 } h.replace({ "c" => 300, "d" => 400 }) #=> {"c"=>300, "d"=>400}
Returns true
if the given key is present in hsh.
h = { "a" => 100, "b" => 200 } h.has_key?("a") #=> true h.has_key?("z") #=> false
Note that include?
and member?
do not test member equality using ==
as do other Enumerables.
See also Enumerable#include?
Same as ENV.delete_if
, but works on (and returns) a copy of the environment.
Similar to ENV.delete_if
, but returns nil
if no changes were made.
Deletes each environment variable for which the block returns a truthy value, returning ENV
(if any deletions) or nil
(if not):
ENV.replace('foo' => '0', 'bar' => '1', 'baz' => '2') ENV.reject! { |name, value| name.start_with?('b') } # => ENV ENV # => {"foo"=>"0"} ENV.reject! { |name, value| name.start_with?('b') } # => nil
Returns an Enumerator
if no block given:
ENV.replace('foo' => '0', 'bar' => '1', 'baz' => '2') e = ENV.reject! # => #<Enumerator: {"bar"=>"1", "baz"=>"2", "foo"=>"0"}:reject!> e.each { |name, value| name.start_with?('b') } # => ENV ENV # => {"foo"=>"0"} e.each { |name, value| name.start_with?('b') } # => nil
Ruby does not allow ENV
to be frozen, so calling ENV.freeze
raises TypeError
.
Returns a new hash created by using environment variable names as values and values as names.
Replaces the entire content of the environment variables with the name/value pairs in the given hash
; returns ENV
.
Replaces the content of ENV
with the given pairs:
ENV.replace('foo' => '0', 'bar' => '1') # => ENV ENV.to_hash # => {"bar"=>"1", "foo"=>"0"}
Raises an exception if a name or value is invalid. See Invalid Names and Values.
Re-hashing the environment variables does nothing. It is provided for compatibility with Hash
.
Returns true when there are no environment variables
ENV.has_key?
, ENV.member?
, and ENV.key?
are aliases for ENV.include?
.
Returns true
if there is an environment variable with the given name
:
ENV.replace('foo' => '0', 'bar' => '1') ENV.include?('foo') # => true
Returns false
if name
is a valid String
and there is no such environment variable:
ENV.include?('baz') # => false
Returns false
if name
is the empty String
or is a String
containing character '='
:
ENV.include?('') # => false ENV.include?('=') # => false
Raises an exception if name
is a String
containing the NUL character "\0"
:
ENV.include?("\0") # Raises ArgumentError (bad environment variable name: contains null byte)
Raises an exception if name
has an encoding that is not ASCII-compatible:
ENV.include?("\xa1\xa1".force_encoding(Encoding::UTF_16LE)) # Raises ArgumentError (bad environment variable name: ASCII incompatible encoding: UTF-16LE)
Raises an exception if name
is not a String:
ENV.include?(Object.new) # TypeError (no implicit conversion of Object into String)
Reads length bytes from ARGF
. The files named on the command line are concatenated and treated as a single file by this method, so when called without arguments the contents of this pseudo file are returned in their entirety.
length must be a non-negative integer or nil
.
If length is a positive integer, read
tries to read length bytes without any conversion (binary mode). It returns nil
if an EOF is encountered before anything can be read. Fewer than length bytes are returned if an EOF is encountered during the read. In the case of an integer length, the resulting string is always in ASCII-8BIT encoding.
If length is omitted or is nil
, it reads until EOF and the encoding conversion is applied, if applicable. A string is returned even if EOF is encountered before any data is read.
If length is zero, it returns an empty string (""
).
If the optional outbuf argument is present, it must reference a String
, which will receive the data. The outbuf will contain only the received data after the method call even if it is not empty at the beginning.
For example:
$ echo "small" > small.txt $ echo "large" > large.txt $ ./glark.rb small.txt large.txt ARGF.read #=> "small\nlarge" ARGF.read(200) #=> "small\nlarge" ARGF.read(2) #=> "sm" ARGF.read(0) #=> ""
Note that this method behaves like the fread() function in C. This means it retries to invoke read(2) system calls to read data with the specified length. If you need the behavior like a single read(2) system call, consider ARGF#readpartial
or ARGF#read_nonblock
.
Reads at most maxlen bytes from the ARGF
stream.
If the optional outbuf argument is present, it must reference a String
, which will receive the data. The outbuf will contain only the received data after the method call even if it is not empty at the beginning.
It raises EOFError
on end of ARGF
stream. Since ARGF
stream is a concatenation of multiple files, internally EOF is occur for each file. ARGF.readpartial
returns empty strings for EOFs except the last one and raises EOFError
for the last one.
Reads ARGF
‘s current file in its entirety, returning an Array
of its lines, one line per element. Lines are assumed to be separated by sep.
lines = ARGF.readlines lines[0] #=> "This is line one\n"
Returns the next line from the current file in ARGF
.
By default lines are assumed to be separated by $/
; to use a different character as a separator, supply it as a String
for the sep argument.
The optional limit argument specifies how many characters of each line to return. By default all characters are returned.
An EOFError
is raised at the end of the file.