returns the socket type as an integer.
Addrinfo.tcp("localhost", 80).protocol == Socket::IPPROTO_TCP #=> true
returns the canonical name as a string.
nil is returned if no canonical name.
The canonical name is set by Addrinfo.getaddrinfo
when AI_CANONNAME is specified.
list = Addrinfo.getaddrinfo("www.ruby-lang.org", 80, :INET, :STREAM, nil, Socket::AI_CANONNAME) p list[0] #=> #<Addrinfo: 221.186.184.68:80 TCP carbon.ruby-lang.org (www.ruby-lang.org)> p list[0].canonname #=> "carbon.ruby-lang.org"
Listens for connections, using the specified int
as the backlog. A call to listen only applies if the socket
is of type SOCK_STREAM or SOCK_SEQPACKET.
backlog
- the maximum length of the queue for pending connections.
require 'socket' include Socket::Constants socket = Socket.new( AF_INET, SOCK_STREAM, 0 ) sockaddr = Socket.pack_sockaddr_in( 2200, 'localhost' ) socket.bind( sockaddr ) socket.listen( 5 )
require 'socket' include Socket::Constants socket = Socket.new( AF_INET, SOCK_STREAM, 0 ) socket.listen( 1 )
On unix based systems the above will work because a new sockaddr
struct is created on the address ADDR_ANY, for an arbitrary port number as handed off by the kernel. It will not work on Windows, because Windows requires that the socket
is bound by calling bind before it can listen.
If the backlog amount exceeds the implementation-dependent maximum queue length, the implementation’s maximum queue length will be used.
On unix-based based systems the following system exceptions may be raised if the call to listen fails:
Errno::EBADF - the socket argument is not a valid file descriptor
Errno::EDESTADDRREQ - the socket is not bound to a local address, and the protocol does not support listening on an unbound socket
Errno::EINVAL - the socket is already connected
Errno::ENOTSOCK - the socket argument does not refer to a socket
Errno::EOPNOTSUPP - the socket protocol does not support listen
Errno::EACCES - the calling process does not have appropriate privileges
Errno::EINVAL - the socket has been shut down
Errno::ENOBUFS - insufficient resources are available in the system to complete the call
On Windows systems the following system exceptions may be raised if the call to listen fails:
Errno::ENETDOWN - the network is down
Errno::EADDRINUSE - the socket’s local address is already in use. This usually occurs during the execution of bind but could be delayed if the call to bind was to a partially wildcard address (involving ADDR_ANY) and if a specific address needs to be committed at the time of the call to listen
Errno::EINPROGRESS - a Windows Sockets 1.1 call is in progress or the service provider is still processing a callback function
Errno::EINVAL - the socket
has not been bound with a call to bind.
Errno::EISCONN - the socket
is already connected
Errno::EMFILE - no more socket descriptors are available
Errno::ENOBUFS - no buffer space is available
Errno::ENOTSOC - socket
is not a socket
Errno::EOPNOTSUPP - the referenced socket
is not a type that supports the listen method
listen manual pages on unix-based systems
listen function in Microsoft’s Winsock functions reference
Listens for connections, using the specified int
as the backlog. A call to listen only applies if the socket
is of type SOCK_STREAM or SOCK_SEQPACKET.
backlog
- the maximum length of the queue for pending connections.
require 'socket' include Socket::Constants socket = Socket.new( AF_INET, SOCK_STREAM, 0 ) sockaddr = Socket.pack_sockaddr_in( 2200, 'localhost' ) socket.bind( sockaddr ) socket.listen( 5 )
require 'socket' include Socket::Constants socket = Socket.new( AF_INET, SOCK_STREAM, 0 ) socket.listen( 1 )
On unix based systems the above will work because a new sockaddr
struct is created on the address ADDR_ANY, for an arbitrary port number as handed off by the kernel. It will not work on Windows, because Windows requires that the socket
is bound by calling bind before it can listen.
If the backlog amount exceeds the implementation-dependent maximum queue length, the implementation’s maximum queue length will be used.
On unix-based based systems the following system exceptions may be raised if the call to listen fails:
Errno::EBADF - the socket argument is not a valid file descriptor
Errno::EDESTADDRREQ - the socket is not bound to a local address, and the protocol does not support listening on an unbound socket
Errno::EINVAL - the socket is already connected
Errno::ENOTSOCK - the socket argument does not refer to a socket
Errno::EOPNOTSUPP - the socket protocol does not support listen
Errno::EACCES - the calling process does not have appropriate privileges
Errno::EINVAL - the socket has been shut down
Errno::ENOBUFS - insufficient resources are available in the system to complete the call
On Windows systems the following system exceptions may be raised if the call to listen fails:
Errno::ENETDOWN - the network is down
Errno::EADDRINUSE - the socket’s local address is already in use. This usually occurs during the execution of bind but could be delayed if the call to bind was to a partially wildcard address (involving ADDR_ANY) and if a specific address needs to be committed at the time of the call to listen
Errno::EINPROGRESS - a Windows Sockets 1.1 call is in progress or the service provider is still processing a callback function
Errno::EINVAL - the socket
has not been bound with a call to bind.
Errno::EISCONN - the socket
is already connected
Errno::EMFILE - no more socket descriptors are available
Errno::ENOBUFS - no buffer space is available
Errno::ENOTSOC - socket
is not a socket
Errno::EOPNOTSUPP - the referenced socket
is not a type that supports the listen method
listen manual pages on unix-based systems
listen function in Microsoft’s Winsock functions reference
Use Addrinfo.getaddrinfo
instead. This method is deprecated for the following reasons:
The 3rd element of the result is the address family of the first address. The address families of the rest of the addresses are not returned.
gethostbyname() may take a long time and it may block other threads. (GVL cannot be released since gethostbyname() is not thread safe.)
This method uses gethostbyname() function already removed from POSIX.
This method lookups host information by hostname.
TCPSocket.gethostbyname("localhost") #=> ["localhost", ["hal"], 2, "127.0.0.1"]
Returns underlying string:
StringIO.open('foo') do |strio| p strio.string strio.string = 'bar' p strio.string end
Output:
"foo" "bar"
Related: StringIO#string=
(assigns the underlying string).
Assigns the underlying string as other_string
, and sets position to zero; returns other_string
:
StringIO.open('foo') do |strio| p strio.string strio.string = 'bar' p strio.string end
Output:
"foo" "bar"
Related: StringIO#string
(returns the underlying string).
Returns the [stored string]:
scanner = StringScanner.new('foobar') scanner.string # => "foobar" scanner.concat('baz') scanner.string # => "foobarbaz"
Replaces the [stored string] with the given other_string
:
Sets both [positions] to zero.
Clears [match values].
Returns other_string
.
scanner = StringScanner.new('foobar') scanner.scan(/foo/) put_situation(scanner) # Situation: # pos: 3 # charpos: 3 # rest: "bar" # rest_size: 3 match_values_cleared?(scanner) # => false scanner.string = 'baz' # => "baz" put_situation(scanner) # Situation: # pos: 0 # charpos: 0 # rest: "baz" # rest_size: 3 match_values_cleared?(scanner) # => true
Attempts to [match] the given pattern
anywhere (at any [position]) n the [target substring]; does not modify the [positions].
If the match succeeds:
Returns a byte offset: the distance in bytes between the current [position] and the end of the matched substring.
Sets all [match values].
scanner = StringScanner.new('foobarbazbatbam') scanner.pos = 6 scanner.exist?(/bat/) # => 6 put_match_values(scanner) # Basic match values: # matched?: true # matched_size: 3 # pre_match: "foobarbaz" # matched : "bat" # post_match: "bam" # Captured match values: # size: 1 # captures: [] # named_captures: {} # values_at: ["bat", nil] # []: # [0]: "bat" # [1]: nil put_situation(scanner) # Situation: # pos: 6 # charpos: 6 # rest: "bazbatbam" # rest_size: 9
If the match fails:
Returns nil
.
Clears all [match values].
scanner.exist?(/nope/) # => nil match_values_cleared?(scanner) # => true
Sets the [position] to its value previous to the recent successful [match] attempt:
scanner = StringScanner.new('foobarbaz') scanner.scan(/foo/) put_situation(scanner) # Situation: # pos: 3 # charpos: 3 # rest: "barbaz" # rest_size: 6 scanner.unscan # => #<StringScanner 0/9 @ "fooba..."> put_situation(scanner) # Situation: # pos: 0 # charpos: 0 # rest: "foobarbaz" # rest_size: 9
Raises an exception if match values are clear:
scanner.scan(/nope/) # => nil match_values_cleared?(scanner) # => true scanner.unscan # Raises StringScanner::Error.
Returns a string representation of self
that may show:
The current [position].
The size (in bytes) of the [stored string].
The substring preceding the current position.
The substring following the current position (which is also the [target substring]).
scanner = StringScanner.new("Fri Dec 12 1975 14:39") scanner.pos = 11 scanner.inspect # => "#<StringScanner 11/21 \"...c 12 \" @ \"1975 ...\">"
If at beginning-of-string, item 4 above (following substring) is omitted:
scanner.reset scanner.inspect # => "#<StringScanner 0/21 @ \"Fri D...\">"
If at end-of-string, all items above are omitted:
scanner.terminate scanner.inspect # => "#<StringScanner fin>"
Sets current codepage. The WIN32OLE.codepage
is initialized according to Encoding.default_internal
. If Encoding.default_internal
is nil then WIN32OLE.codepage
is initialized according to Encoding.default_external
.
WIN32OLE.codepage = WIN32OLE::CP_UTF8 WIN32OLE.codepage = 65001
Returns a new String
containing the hash entries:
h = {foo: 0, bar: 1, baz: 2} h.inspect # => "{foo: 0, bar: 1, baz: 2}"
Returns a copy of self
with all nil
-valued entries removed:
h = {foo: 0, bar: nil, baz: 2, bat: nil} h1 = h.compact h1 # => {:foo=>0, :baz=>2}
Returns self
with all its nil
-valued entries removed (in place):
h = {foo: 0, bar: nil, baz: 2, bat: nil} h.compact! # => {:foo=>0, :baz=>2}
Returns nil
if no entries were removed.
Returns the contents of the environment as a String:
ENV.replace('foo' => '0', 'bar' => '1') ENV.inspect # => "{\"bar\"=>\"1\", \"foo\"=>\"0\"}"
Raises TypeError
, because ENV
is a wrapper for the process-wide environment variables and a clone is useless. Use to_h to get a copy of ENV
data as a hash.
Returns “ARGF”.
Sets optional filename and line number that will be used in ERB
code evaluation and error reporting. See also filename=
and lineno=
erb = ERB.new('<%= some_x %>') erb.render # undefined local variable or method `some_x' # from (erb):1 erb.location = ['file.erb', 3] # All subsequent error reporting would use new location erb.render # undefined local variable or method `some_x' # from file.erb:4
Returns a network byte ordered string form of the IP address.
Returns a string containing a human-readable representation of the ipaddr. (“#<IPAddr: family:address/mask>”)
Creates an option from the given parameters params
. See Parameters for New Options.
The block, if given, is the handler for the created option. When the option is encountered during command-line parsing, the block is called with the argument given for the option, if any. See Option Handlers.
Parses environment variable env
or its uppercase with splitting like a shell.
env
defaults to the basename of the program.