ライブラリ
クラス
- Addrinfo (12)
- BasicSocket (12)
-
Fiddle
:: Closure (12) -
Net
:: FTP :: MLSxEntry (10) -
Net
:: IMAP :: BodyTypeBasic (12) -
Net
:: IMAP :: BodyTypeMessage (24) -
Net
:: IMAP :: BodyTypeText (24) -
Socket
:: AncillaryData (48) -
WIN32OLE
_ METHOD (84) -
WIN32OLE
_ TYPE (48) -
WIN32OLE
_ TYPELIB (24) -
WIN32OLE
_ VARIABLE (24) -
WIN32OLE
_ VARIANT (12) -
Win32
:: Registry (24) -
Zlib
:: ZStream (12)
モジュール
- Kernel (72)
キーワード
- [] (12)
-
check
_ signedness (24) -
check
_ sizeof (24) -
convertible
_ int (24) - ctype (12)
-
data
_ type (12) - dispid (12)
- facts (10)
- helpcontext (24)
- invkind (12)
-
ip
_ pktinfo (12) -
ipv6
_ pktinfo (12) -
ipv6
_ pktinfo _ ifindex (12) - lines (24)
-
major
_ version (24) -
minor
_ version (24) -
offset
_ vtbl (12) -
ole
_ type _ detail (12) - read (12)
-
return
_ vtype (12) - sendmsg (12)
- size (36)
-
size
_ opt _ params (12) -
size
_ params (12) - socktype (12)
- typekind (12)
- varkind (12)
- vartype (12)
検索結果
先頭5件
-
WIN32OLE
_ TYPELIB # major _ version -> Integer (3102.0) -
TypeLibのメジャーバージョン番号を取得します。
...TypeLibのメジャーバージョン番号を取得します。
@return TypeLibのメジャーバージョン番号を整数で返します。
@raise WIN32OLERuntimeError TypeLibの属性が読み取れない場合に通知します。
tlib = WIN32OLE_TYPELIB.new('Microsoft Excel 14.0 Object L... -
WIN32OLE
_ TYPELIB # minor _ version -> Integer (3102.0) -
TypeLibのマイナーバージョン番号を取得します。
...TypeLibのマイナーバージョン番号を取得します。
@return TypeLibのマイナーバージョン番号を整数で返します。
@raise WIN32OLERuntimeError TypeLibの属性が読み取れない場合に通知します。
tlib = WIN32OLE_TYPELIB.new('Microsoft Excel 14.0 Object L... -
Kernel
# convertible _ int(type , headers = nil , opts = nil) (359.0) -
Returns the convertible integer type of the given +type+. You may optionally specify additional +headers+ to search in for the +type+. _Convertible_ means actually same type, or typedefed from same type. If the +type+ is a integer type and _convertible_ type is found, following macros are passed as preprocessor constants to the compiler using the +type+ name, in uppercase. * 'TYPEOF_', followed by the +type+ name, followed by '=X' where 'X' is the found _convertible_ type name. * 'TYP2NUM' and 'NUM2TYP, where 'TYP' is the +type+ name in uppercase with replacing '_t' suffix with 'T', followed by '=X' where 'X' is the macro name to convert +type+ to +Integer+ object, and vice versa. For example, if foobar_t is defined as unsigned long, then convertible_int("foobar_t") would return "unsigned long", and define macros: #define TYPEOF_FOOBAR_T unsigned long #define FOOBART2NUM ULONG2NUM #define NUM2FOOBART NUM2ULONG
...Returns the convertible integer type of the given +type+. You may
optionally specify additional +headers+ to search in for the +type+.
_Convertible_ means actually same type, or typedefed from same type.
If the +type+ is a integer type and _convertible_ type is found,
following macros are p......as preprocessor constants to the
compiler using the +type+ name, in uppercase.
* 'TYPEOF_', followed by the +type+ name, followed by '=X' where 'X'
is the found _convertible_ type name. * 'TYP2NUM' and 'NUM2TYP,
where 'TYP' is the +type+ name in uppercase with replacing '_t'
suffix wit......y '=X' where 'X' is the macro name to
convert +type+ to +Integer+ object, and vice versa.
For example, if foobar_t is defined as unsigned long, then
convertible_int("foobar_t") would return "unsigned long", and define
macros:
#define TYPEOF_FOOBAR_T unsigned long
#define FOOBART2NUM... -
Kernel
# convertible _ int(type , headers = nil , opts = nil) { . . . } (359.0) -
Returns the convertible integer type of the given +type+. You may optionally specify additional +headers+ to search in for the +type+. _Convertible_ means actually same type, or typedefed from same type. If the +type+ is a integer type and _convertible_ type is found, following macros are passed as preprocessor constants to the compiler using the +type+ name, in uppercase. * 'TYPEOF_', followed by the +type+ name, followed by '=X' where 'X' is the found _convertible_ type name. * 'TYP2NUM' and 'NUM2TYP, where 'TYP' is the +type+ name in uppercase with replacing '_t' suffix with 'T', followed by '=X' where 'X' is the macro name to convert +type+ to +Integer+ object, and vice versa. For example, if foobar_t is defined as unsigned long, then convertible_int("foobar_t") would return "unsigned long", and define macros: #define TYPEOF_FOOBAR_T unsigned long #define FOOBART2NUM ULONG2NUM #define NUM2FOOBART NUM2ULONG
...Returns the convertible integer type of the given +type+. You may
optionally specify additional +headers+ to search in for the +type+.
_Convertible_ means actually same type, or typedefed from same type.
If the +type+ is a integer type and _convertible_ type is found,
following macros are p......as preprocessor constants to the
compiler using the +type+ name, in uppercase.
* 'TYPEOF_', followed by the +type+ name, followed by '=X' where 'X'
is the found _convertible_ type name. * 'TYP2NUM' and 'NUM2TYP,
where 'TYP' is the +type+ name in uppercase with replacing '_t'
suffix wit......y '=X' where 'X' is the macro name to
convert +type+ to +Integer+ object, and vice versa.
For example, if foobar_t is defined as unsigned long, then
convertible_int("foobar_t") would return "unsigned long", and define
macros:
#define TYPEOF_FOOBAR_T unsigned long
#define FOOBART2NUM... -
Kernel
# check _ signedness(type , headers = nil , opts = nil) -> "signed" | "unsigned" | nil (263.0) -
Returns the signedness of the given +type+. You may optionally specify additional +headers+ to search in for the +type+. If the +type+ is found and is a numeric type, a macro is passed as a preprocessor constant to the compiler using the +type+ name, in uppercase, prepended with 'SIGNEDNESS_OF_', followed by the +type+ name, followed by '=X' where 'X' is positive integer if the +type+ is unsigned, or negative integer if the +type+ is signed. For example, if size_t is defined as unsigned, then check_signedness('size_t') would returned +1 and the SIGNEDNESS_OF_SIZE_T=+1 preprocessor macro would be passed to the compiler, and SIGNEDNESS_OF_INT=-1 if check_signedness('int') is done.
...iven +type+. You may optionally
specify additional +headers+ to search in for the +type+.
If the +type+ is found and is a numeric type, a macro is passed as a
preprocessor constant to the compiler using the +type+ name, in
uppercase, prepended with 'SIGNEDNESS_OF_', followed by the +type+
na......me, followed by '=X' where 'X' is positive integer if the +type+ is
unsigned, or negative integer if the +type+ is signed.
For example, if size_t is defined as unsigned, then
check_signedness('size_t') would returned +1 and the
SIGNEDNESS_OF_SIZE_T=+1 preprocessor macro would be passed to the... -
Kernel
# check _ signedness(type , headers = nil , opts = nil) { . . . } -> "signed" | "unsigned" | nil (263.0) -
Returns the signedness of the given +type+. You may optionally specify additional +headers+ to search in for the +type+. If the +type+ is found and is a numeric type, a macro is passed as a preprocessor constant to the compiler using the +type+ name, in uppercase, prepended with 'SIGNEDNESS_OF_', followed by the +type+ name, followed by '=X' where 'X' is positive integer if the +type+ is unsigned, or negative integer if the +type+ is signed. For example, if size_t is defined as unsigned, then check_signedness('size_t') would returned +1 and the SIGNEDNESS_OF_SIZE_T=+1 preprocessor macro would be passed to the compiler, and SIGNEDNESS_OF_INT=-1 if check_signedness('int') is done.
...iven +type+. You may optionally
specify additional +headers+ to search in for the +type+.
If the +type+ is found and is a numeric type, a macro is passed as a
preprocessor constant to the compiler using the +type+ name, in
uppercase, prepended with 'SIGNEDNESS_OF_', followed by the +type+
na......me, followed by '=X' where 'X' is positive integer if the +type+ is
unsigned, or negative integer if the +type+ is signed.
For example, if size_t is defined as unsigned, then
check_signedness('size_t') would returned +1 and the
SIGNEDNESS_OF_SIZE_T=+1 preprocessor macro would be passed to the... -
Kernel
# check _ sizeof(type , headers = nil) -> Integer | nil (229.0) -
与えられた型のサイズを返します。
...与えられた型のサイズを返します。
型 type がシステムに存在する場合は、グローバル変数 $defs に
"-DSIZEOF_type=X" を追加し、型のサイズを返します。型 type がシステムに
存在しない場合は、nil を返します。
例えば、
requi......re 'mkmf'
check_sizeof('mystruct') # => 12
である場合、SIZEOF_MYSTRUCT=12 というプリプロセッサマクロをコンパイラに渡します。
@param type 検査したい型を指定します。
@param headers 追加のヘッダファイルを指定します。... -
Kernel
# check _ sizeof(type , headers = nil) { . . . } -> Integer | nil (229.0) -
与えられた型のサイズを返します。
...与えられた型のサイズを返します。
型 type がシステムに存在する場合は、グローバル変数 $defs に
"-DSIZEOF_type=X" を追加し、型のサイズを返します。型 type がシステムに
存在しない場合は、nil を返します。
例えば、
requi......re 'mkmf'
check_sizeof('mystruct') # => 12
である場合、SIZEOF_MYSTRUCT=12 というプリプロセッサマクロをコンパイラに渡します。
@param type 検査したい型を指定します。
@param headers 追加のヘッダファイルを指定します。... -
Net
:: FTP :: MLSxEntry # facts -> { String => String|Integer|Time } (144.0) -
そのエントリの「facts」を返します。
...りません。
3659 では
modify, perm, type, size, unique はすべてのサーバで
対応すべき(SHOULD)、とされています。
* "modify" : 変更時刻 (Time)
* "create": 作成時刻
* "perm": パーミッション(String)
* "type": 種類(String, "file", "dir", "cdir", "pdi......r" など)
* "size": ファイルサイズ (Integer, octet単位)
* "unique": ユニークID (String)
* "lang": ファイルの言語 (String)
* "media-type": メディアタイプ (String)
* "charset": 文字エンコーディング (String)
サーバが UNIX 系 OS の場合は以下......ような facts が
使える可能性があります。
* "unix.mode": ファイルモード(Integer)
* "unix.group": グループ(Integer)
* "unix.owner": ファイルのオーナー(Integer)
* "unix.atime": ファイルに最後にアクセスした時刻 (Time)
* "unix.ctime": ファ... -
Socket
:: AncillaryData # ip _ pktinfo -> [Addrinfo , Integer , Addrinfo] (124.0) -
自身の type が IP_PKTINFO である場合、保持しているデータ (アドレス、インターフェースのインデックス、ローカルアドレス) を3要素の配列で返します。
...自身の type が IP_PKTINFO である場合、保持しているデータ
(アドレス、インターフェースのインデックス、ローカルアドレス)
を3要素の配列で返します。
IP_PKTINFO は非標準的拡張であり、システムによっては使えない場合があ......AncillaryData.ip_pktinfo(addr, ifindex, spec_dest)
p ancdata.ip_pktinfo
#=> [#<Addrinfo: 127.0.0.1>, 0, #<Addrinfo: 127.0.0.1>]
@raise TypeError level, type が IPPROTO_IP, IP_PKTINFO でない場合に
発生します。
@see Socket::AncillaryData.ip_pktinfo,
Socket::Constants::IP_...