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1722e4a952
mutable! We do not want to shock anyone. This closes SF bug #483805. Re-factor so that the description of the "access" keyword parameter is not repeated in both the descriptions of mmap(). Also, only make sure the first description of mmap() appears in the index. The the index link is followed, the first is now used to locate the page on the screen; chances are really good both will be visible. This avoids the problem that the index entry for the second is selected and the first version is not visible, making the reader consider that mmap() is not available on Windows.
165 lines
7.2 KiB
TeX
165 lines
7.2 KiB
TeX
\section{\module{mmap} ---
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Memory-mapped file support}
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\declaremodule{builtin}{mmap}
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\modulesynopsis{Interface to memory-mapped files for \UNIX\ and Windows.}
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Memory-mapped file objects behave like both strings and like
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file objects. Unlike normal string objects, however, these are
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mutable. You can use mmap objects in most places where strings
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are expected; for example, you can use the \module{re} module to
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search through a memory-mapped file. Since they're mutable, you can
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change a single character by doing \code{obj[\var{index}] = 'a'}, or
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change a substring by assigning to a slice:
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\code{obj[\var{i1}:\var{i2}] = '...'}. You can also read and write
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data starting at the current file position, and \method{seek()}
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through the file to different positions.
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A memory-mapped file is created by the \function{mmap()} function,
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which is different on \UNIX{} and on Windows. In either case you must
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provide a file descriptor for a file opened for update.
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If you wish to map an existing Python file object, use its
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\method{fileno()} method to obtain the correct value for the
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\var{fileno} parameter. Otherwise, you can open the file using the
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\function{os.open()} function, which returns a file descriptor
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directly (the file still needs to be closed when done).
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For both the \UNIX{} and Windows versions of the function,
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\var{access} may be specified as an optional keyword parameter.
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\var{access} accepts one of three values: \constant{ACCESS_READ},
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\constant{ACCESS_WRITE}, or \constant{ACCESS_COPY} to specify
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readonly, write-through or copy-on-write memory respectively.
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\var{access} can be used on both \UNIX{} and Windows. If
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\var{access} is not specified, Windows mmap returns a write-through
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mapping. The initial memory values for all three access types are
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taken from the specified file. Assignment to an
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\constant{ACCESS_READ} memory map raises a \exception{TypeError}
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exception. Assignment to an \constant{ACCESS_WRITE} memory map
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affects both memory and the underlying file. Assigment to an
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\constant{ACCESS_COPY} memory map affects memory but does not update
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the underlying file.
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\begin{funcdesc}{mmap}{fileno, length\optional{, tagname\optional{, access}}}
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\strong{(Windows version)} Maps \var{length} bytes from the file
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specified by the file handle \var{fileno}, and returns a mmap
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object. If \var{length} is \code{0}, the maximum length of the map
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will be the current size of the file when \function{mmap()} is
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called.
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\var{tagname}, if specified and not \code{None}, is a string giving
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a tag name for the mapping. Windows allows you to have many
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different mappings against the same file. If you specify the name
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of an existing tag, that tag is opened, otherwise a new tag of this
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name is created. If this parameter is omitted or \code{None}, the
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mapping is created without a name. Avoiding the use of the tag
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parameter will assist in keeping your code portable between \UNIX{}
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and Windows.
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\end{funcdesc}
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\begin{funcdescni}{mmap}{fileno, length\optional{, flags\optional{,
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prot\optional{, access}}}}
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\strong{(\UNIX{} version)} Maps \var{length} bytes from the file
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specified by the file descriptor \var{fileno}, and returns a mmap
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object.
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\var{flags} specifies the nature of the mapping.
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\constant{MAP_PRIVATE} creates a private copy-on-write mapping, so
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changes to the contents of the mmap object will be private to this
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process, and \constant{MAP_SHARED} creates a mapping that's shared
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with all other processes mapping the same areas of the file. The
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default value is \constant{MAP_SHARED}.
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\var{prot}, if specified, gives the desired memory protection; the
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two most useful values are \constant{PROT_READ} and
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\constant{PROT_WRITE}, to specify that the pages may be read or
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written. \var{prot} defaults to \constant{PROT_READ | PROT_WRITE}.
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\var{access} may be specified in lieu of \var{flags} and \var{prot}
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as an optional keyword parameter. It is an error to specify both
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\var{flags}, \var{prot} and \var{access}. See the description of
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\var{access} above for information on how to use this parameter.
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\end{funcdescni}
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Memory-mapped file objects support the following methods:
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\begin{methoddesc}{close}{}
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Close the file. Subsequent calls to other methods of the object
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will result in an exception being raised.
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\end{methoddesc}
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\begin{methoddesc}{find}{string\optional{, start}}
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Returns the lowest index in the object where the substring
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\var{string} is found. Returns \code{-1} on failure. \var{start}
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is the index at which the search begins, and defaults to zero.
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\end{methoddesc}
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\begin{methoddesc}{flush}{\optional{offset, size}}
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Flushes changes made to the in-memory copy of a file back to disk.
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Without use of this call there is no guarantee that changes are
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written back before the object is destroyed. If \var{offset} and
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\var{size} are specified, only changes to the given range of bytes
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will be flushed to disk; otherwise, the whole extent of the mapping
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is flushed.
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\end{methoddesc}
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\begin{methoddesc}{move}{\var{dest}, \var{src}, \var{count}}
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Copy the \var{count} bytes starting at offset \var{src} to the
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destination index \var{dest}. If the mmap was created with
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\constant{ACCESS_READ}, then calls to move will throw a
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\exception{TypeError} exception.
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\end{methoddesc}
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\begin{methoddesc}{read}{\var{num}}
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Return a string containing up to \var{num} bytes starting from the
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current file position; the file position is updated to point after the
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bytes that were returned.
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\end{methoddesc}
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\begin{methoddesc}{read_byte}{}
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Returns a string of length 1 containing the character at the current
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file position, and advances the file position by 1.
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\end{methoddesc}
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\begin{methoddesc}{readline}{}
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Returns a single line, starting at the current file position and up to
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the next newline.
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\end{methoddesc}
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\begin{methoddesc}{resize}{\var{newsize}}
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If the mmap was created with \constant{ACCESS_READ} or
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\constant{ACCESS_COPY}, resizing the map will throw a \exception{TypeError} exception.
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\end{methoddesc}
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\begin{methoddesc}{seek}{pos\optional{, whence}}
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Set the file's current position. \var{whence} argument is optional
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and defaults to \code{0} (absolute file positioning); other values
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are \code{1} (seek relative to the current position) and \code{2}
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(seek relative to the file's end).
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\end{methoddesc}
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\begin{methoddesc}{size}{}
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Return the length of the file, which can be larger than the size of
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the memory-mapped area.
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\end{methoddesc}
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\begin{methoddesc}{tell}{}
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Returns the current position of the file pointer.
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\end{methoddesc}
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\begin{methoddesc}{write}{\var{string}}
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Write the bytes in \var{string} into memory at the current position
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of the file pointer; the file position is updated to point after the
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bytes that were written. If the mmap was created with
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\constant{ACCESS_READ}, then writing to it will throw a
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\exception{TypeError} exception.
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\end{methoddesc}
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\begin{methoddesc}{write_byte}{\var{byte}}
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Write the single-character string \var{byte} into memory at the
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current position of the file pointer; the file position is advanced
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by \code{1}.If the mmap was created with \constant{ACCESS_READ},
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then writing to it will throw a \exception{TypeError} exception.
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\end{methoddesc}
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