2019-11-08 05:54:39 +03:00
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# for pack.c
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class Array
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# call-seq:
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# arr.pack( aTemplateString ) -> aBinaryString
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# arr.pack( aTemplateString, buffer: aBufferString ) -> aBufferString
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#
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# Packs the contents of <i>arr</i> into a binary sequence according to
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# the directives in <i>aTemplateString</i> (see the table below)
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# Directives ``A,'' ``a,'' and ``Z'' may be followed by a count,
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# which gives the width of the resulting field. The remaining
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# directives also may take a count, indicating the number of array
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# elements to convert. If the count is an asterisk
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# (``<code>*</code>''), all remaining array elements will be
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# converted. Any of the directives ``<code>sSiIlL</code>'' may be
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# followed by an underscore (``<code>_</code>'') or
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# exclamation mark (``<code>!</code>'') to use the underlying
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# platform's native size for the specified type; otherwise, they use a
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# platform-independent size. Spaces are ignored in the template
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# string. See also String#unpack.
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#
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# a = [ "a", "b", "c" ]
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# n = [ 65, 66, 67 ]
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# a.pack("A3A3A3") #=> "a b c "
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# a.pack("a3a3a3") #=> "a\000\000b\000\000c\000\000"
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# n.pack("ccc") #=> "ABC"
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#
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# If <i>aBufferString</i> is specified and its capacity is enough,
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# +pack+ uses it as the buffer and returns it.
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# When the offset is specified by the beginning of <i>aTemplateString</i>,
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# the result is filled after the offset.
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# If original contents of <i>aBufferString</i> exists and it's longer than
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# the offset, the rest of <i>offsetOfBuffer</i> are overwritten by the result.
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# If it's shorter, the gap is filled with ``<code>\0</code>''.
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#
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# Note that ``buffer:'' option does not guarantee not to allocate memory
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# in +pack+. If the capacity of <i>aBufferString</i> is not enough,
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# +pack+ allocates memory.
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#
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# Directives for +pack+.
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#
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# Integer | Array |
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# Directive | Element | Meaning
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# ----------------------------------------------------------------------------
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# C | Integer | 8-bit unsigned (unsigned char)
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# S | Integer | 16-bit unsigned, native endian (uint16_t)
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# L | Integer | 32-bit unsigned, native endian (uint32_t)
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# Q | Integer | 64-bit unsigned, native endian (uint64_t)
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# J | Integer | pointer width unsigned, native endian (uintptr_t)
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# | | (J is available since Ruby 2.3.)
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# | |
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# c | Integer | 8-bit signed (signed char)
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# s | Integer | 16-bit signed, native endian (int16_t)
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# l | Integer | 32-bit signed, native endian (int32_t)
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# q | Integer | 64-bit signed, native endian (int64_t)
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# j | Integer | pointer width signed, native endian (intptr_t)
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# | | (j is available since Ruby 2.3.)
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# | |
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# S_ S! | Integer | unsigned short, native endian
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# I I_ I! | Integer | unsigned int, native endian
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# L_ L! | Integer | unsigned long, native endian
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# Q_ Q! | Integer | unsigned long long, native endian (ArgumentError
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# | | if the platform has no long long type.)
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# | | (Q_ and Q! is available since Ruby 2.1.)
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# J! | Integer | uintptr_t, native endian (same with J)
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# | | (J! is available since Ruby 2.3.)
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# | |
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# s_ s! | Integer | signed short, native endian
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# i i_ i! | Integer | signed int, native endian
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# l_ l! | Integer | signed long, native endian
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# q_ q! | Integer | signed long long, native endian (ArgumentError
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# | | if the platform has no long long type.)
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# | | (q_ and q! is available since Ruby 2.1.)
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# j! | Integer | intptr_t, native endian (same with j)
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# | | (j! is available since Ruby 2.3.)
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# | |
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# S> s> S!> s!> | Integer | same as the directives without ">" except
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# L> l> L!> l!> | | big endian
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# I!> i!> | | (available since Ruby 1.9.3)
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# Q> q> Q!> q!> | | "S>" is same as "n"
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# J> j> J!> j!> | | "L>" is same as "N"
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# | |
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# S< s< S!< s!< | Integer | same as the directives without "<" except
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# L< l< L!< l!< | | little endian
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# I!< i!< | | (available since Ruby 1.9.3)
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# Q< q< Q!< q!< | | "S<" is same as "v"
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# J< j< J!< j!< | | "L<" is same as "V"
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# | |
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# n | Integer | 16-bit unsigned, network (big-endian) byte order
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# N | Integer | 32-bit unsigned, network (big-endian) byte order
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# v | Integer | 16-bit unsigned, VAX (little-endian) byte order
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# V | Integer | 32-bit unsigned, VAX (little-endian) byte order
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# | |
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# U | Integer | UTF-8 character
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# w | Integer | BER-compressed integer
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#
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# Float | Array |
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# Directive | Element | Meaning
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# ---------------------------------------------------------------------------
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# D d | Float | double-precision, native format
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# F f | Float | single-precision, native format
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# E | Float | double-precision, little-endian byte order
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# e | Float | single-precision, little-endian byte order
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# G | Float | double-precision, network (big-endian) byte order
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# g | Float | single-precision, network (big-endian) byte order
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#
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# String | Array |
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# Directive | Element | Meaning
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# ---------------------------------------------------------------------------
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# A | String | arbitrary binary string (space padded, count is width)
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# a | String | arbitrary binary string (null padded, count is width)
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# Z | String | same as ``a'', except that null is added with *
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# B | String | bit string (MSB first)
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# b | String | bit string (LSB first)
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# H | String | hex string (high nibble first)
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# h | String | hex string (low nibble first)
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# u | String | UU-encoded string
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# M | String | quoted printable, MIME encoding (see also RFC2045)
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# | | (text mode but input must use LF and output LF)
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# m | String | base64 encoded string (see RFC 2045)
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# | | (if count is 0, no line feed are added, see RFC 4648)
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# | | (count specifies input bytes between each LF,
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# | | rounded down to nearest multiple of 3)
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# P | String | pointer to a structure (fixed-length string)
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# p | String | pointer to a null-terminated string
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#
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# Misc. | Array |
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# Directive | Element | Meaning
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# ---------------------------------------------------------------------------
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# @ | --- | moves to absolute position
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# X | --- | back up a byte
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# x | --- | null byte
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def pack(fmt, buffer: nil)
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Primitive.pack_pack(fmt, buffer)
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2019-11-08 05:54:39 +03:00
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end
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end
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class String
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# call-seq:
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# str.unpack(format) -> anArray
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#
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# Decodes <i>str</i> (which may contain binary data) according to the
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# format string, returning an array of each value extracted. The
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# format string consists of a sequence of single-character directives,
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# summarized in the table at the end of this entry.
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# Each directive may be followed
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# by a number, indicating the number of times to repeat with this
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# directive. An asterisk (``<code>*</code>'') will use up all
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# remaining elements. The directives <code>sSiIlL</code> may each be
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# followed by an underscore (``<code>_</code>'') or
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# exclamation mark (``<code>!</code>'') to use the underlying
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# platform's native size for the specified type; otherwise, it uses a
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# platform-independent consistent size. Spaces are ignored in the
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# format string. See also String#unpack1, Array#pack.
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#
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# "abc \0\0abc \0\0".unpack('A6Z6') #=> ["abc", "abc "]
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# "abc \0\0".unpack('a3a3') #=> ["abc", " \000\000"]
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# "abc \0abc \0".unpack('Z*Z*') #=> ["abc ", "abc "]
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# "aa".unpack('b8B8') #=> ["10000110", "01100001"]
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# "aaa".unpack('h2H2c') #=> ["16", "61", 97]
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# "\xfe\xff\xfe\xff".unpack('sS') #=> [-2, 65534]
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# "now=20is".unpack('M*') #=> ["now is"]
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# "whole".unpack('xax2aX2aX1aX2a') #=> ["h", "e", "l", "l", "o"]
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#
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# This table summarizes the various formats and the Ruby classes
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# returned by each.
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#
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# Integer | |
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# Directive | Returns | Meaning
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# ------------------------------------------------------------------
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# C | Integer | 8-bit unsigned (unsigned char)
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# S | Integer | 16-bit unsigned, native endian (uint16_t)
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# L | Integer | 32-bit unsigned, native endian (uint32_t)
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# Q | Integer | 64-bit unsigned, native endian (uint64_t)
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# J | Integer | pointer width unsigned, native endian (uintptr_t)
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# | |
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# c | Integer | 8-bit signed (signed char)
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# s | Integer | 16-bit signed, native endian (int16_t)
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# l | Integer | 32-bit signed, native endian (int32_t)
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# q | Integer | 64-bit signed, native endian (int64_t)
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# j | Integer | pointer width signed, native endian (intptr_t)
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# | |
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# S_ S! | Integer | unsigned short, native endian
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# I I_ I! | Integer | unsigned int, native endian
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# L_ L! | Integer | unsigned long, native endian
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# Q_ Q! | Integer | unsigned long long, native endian (ArgumentError
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# | | if the platform has no long long type.)
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# J! | Integer | uintptr_t, native endian (same with J)
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# | |
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# s_ s! | Integer | signed short, native endian
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# i i_ i! | Integer | signed int, native endian
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# l_ l! | Integer | signed long, native endian
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# q_ q! | Integer | signed long long, native endian (ArgumentError
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# | | if the platform has no long long type.)
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# j! | Integer | intptr_t, native endian (same with j)
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# | |
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# S> s> S!> s!> | Integer | same as the directives without ">" except
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# L> l> L!> l!> | | big endian
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# I!> i!> | |
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# Q> q> Q!> q!> | | "S>" is same as "n"
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# J> j> J!> j!> | | "L>" is same as "N"
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# | |
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# S< s< S!< s!< | Integer | same as the directives without "<" except
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# L< l< L!< l!< | | little endian
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# I!< i!< | |
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# Q< q< Q!< q!< | | "S<" is same as "v"
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# J< j< J!< j!< | | "L<" is same as "V"
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# | |
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# n | Integer | 16-bit unsigned, network (big-endian) byte order
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# N | Integer | 32-bit unsigned, network (big-endian) byte order
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# v | Integer | 16-bit unsigned, VAX (little-endian) byte order
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# V | Integer | 32-bit unsigned, VAX (little-endian) byte order
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# | |
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# U | Integer | UTF-8 character
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# w | Integer | BER-compressed integer (see Array#pack)
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#
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# Float | |
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# Directive | Returns | Meaning
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# -----------------------------------------------------------------
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# D d | Float | double-precision, native format
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# F f | Float | single-precision, native format
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# E | Float | double-precision, little-endian byte order
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# e | Float | single-precision, little-endian byte order
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# G | Float | double-precision, network (big-endian) byte order
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# g | Float | single-precision, network (big-endian) byte order
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#
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# String | |
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# Directive | Returns | Meaning
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# -----------------------------------------------------------------
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# A | String | arbitrary binary string (remove trailing nulls and ASCII spaces)
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# a | String | arbitrary binary string
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# Z | String | null-terminated string
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# B | String | bit string (MSB first)
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# b | String | bit string (LSB first)
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# H | String | hex string (high nibble first)
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# h | String | hex string (low nibble first)
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# u | String | UU-encoded string
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# M | String | quoted-printable, MIME encoding (see RFC2045)
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# m | String | base64 encoded string (RFC 2045) (default)
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# | | base64 encoded string (RFC 4648) if followed by 0
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# P | String | pointer to a structure (fixed-length string)
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# p | String | pointer to a null-terminated string
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#
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# Misc. | |
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# Directive | Returns | Meaning
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# -----------------------------------------------------------------
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# @ | --- | skip to the offset given by the length argument
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# X | --- | skip backward one byte
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# x | --- | skip forward one byte
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#
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# HISTORY
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#
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# * J, J! j, and j! are available since Ruby 2.3.
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# * Q_, Q!, q_, and q! are available since Ruby 2.1.
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# * I!<, i!<, I!>, and i!> are available since Ruby 1.9.3.
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def unpack(fmt)
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Primitive.pack_unpack(fmt)
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end
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# call-seq:
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# str.unpack1(format) -> obj
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#
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# Decodes <i>str</i> (which may contain binary data) according to the
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# format string, returning the first value extracted.
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# See also String#unpack, Array#pack.
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#
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# Contrast with String#unpack:
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#
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# "abc \0\0abc \0\0".unpack('A6Z6') #=> ["abc", "abc "]
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# "abc \0\0abc \0\0".unpack1('A6Z6') #=> "abc"
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#
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# In that case data would be lost but often it's the case that the array
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# only holds one value, especially when unpacking binary data. For instance:
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#
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# "\xff\x00\x00\x00".unpack("l") #=> [255]
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# "\xff\x00\x00\x00".unpack1("l") #=> 255
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#
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# Thus unpack1 is convenient, makes clear the intention and signals
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# the expected return value to those reading the code.
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def unpack1(fmt)
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Primitive.pack_unpack1(fmt)
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end
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end
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