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U e5d�k�@s|dZddlZddlZddlZddlZddlZddlZddlmZ ej dkrXddlmZ ndZ ddlZddlmZmZmZmZdddhZeed �r�e�ej�e�ej�d ZeZeed�p�ejjZd7dd�Zdd�Zz ejZWne k �r�eZYnXGdd�d�Z!Gdd�d�Z"z ej#Z#Wn(e k �rHGdd�de$e%�Z#YnXGdd�dej&d�Z'ej'�(e'�Gdd�de'�Z)ej)�(e)�ddl*m+Z+e)�(e+�Gdd �d e'�Z,ej,�(e,�Gd!d"�d"e,�Z-Gd#d$�d$e,�Z.Gd%d&�d&e-�Z/Gd'd(�d(e-�Z0Gd)d*�d*e,�Z1Gd+d,�d,e0e/�Z2Gd-d.�d.e)�Z+Gd/d0�d0e'�Z3ej3�(e3�Gd1d2�d2ej4�Z5Gd3d4�d4e3�Z6Gd5d6�d6e6�Z7dS)8z) Python implementation of the io module. �N)� allocate_lock>�win32�cygwin)�setmode)�__all__�SEEK_SET�SEEK_CUR�SEEK_END��� SEEK_HOLEi Zgettotalrefcount�r���Tc Cs�t|t�st�|�}t|tttf�s0td|��t|t�sFtd|��t|t�s\td|��|dk rzt|t�sztd|��|dk r�t|t�s�td|��t|�}|td�s�t|�t|�kr�t d|��d|k} d |k} d |k}d|k}d|k} d |k}d|k}d|k�rD| �s"|�s"|�s"| �r*t d��ddl }|�dtd�d} |�rX|�rXt d��| | ||dk�rvt d��| �s�| �s�|�s�|�s�t d��|�r�|dk �r�t d��|�r�|dk �r�t d��|�r�|dk �r�t d��|�r|dk�rddl }|�dt d�t|| �rd�pd| �r"d �p$d|�r2d �p4d|�rBd�pDd| �rRd�pTd||d�}|}�z$d}|dk�s�|dk�r�|���r�d }d}|dk�r�t}zt�|���j}Wnttfk �r�YnX|dk�r�|}|dk�r�t d!��|dk�r|�r|WSt d"��| �r t||�}n<| �s2|�s2|�r>t||�}n| �rPt||�}nt d#|��|}|�rl|WSt|||||�}|}||_|WS|���YnXdS)$a�Open file and return a stream. 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The available modes are: ========= =============================================================== Character Meaning --------- --------------------------------------------------------------- 'r' open for reading (default) 'w' open for writing, truncating the file first 'x' create a new file and open it for writing 'a' open for writing, appending to the end of the file if it exists 'b' binary mode 't' text mode (default) '+' open a disk file for updating (reading and writing) 'U' universal newline mode (deprecated) ========= =============================================================== The default mode is 'rt' (open for reading text). For binary random access, the mode 'w+b' opens and truncates the file to 0 bytes, while 'r+b' opens the file without truncation. The 'x' mode implies 'w' and raises an `FileExistsError` if the file already exists. Python distinguishes between files opened in binary and text modes, even when the underlying operating system doesn't. Files opened in binary mode (appending 'b' to the mode argument) return contents as bytes objects without any decoding. In text mode (the default, or when 't' is appended to the mode argument), the contents of the file are returned as strings, the bytes having been first decoded using a platform-dependent encoding or using the specified encoding if given. 'U' mode is deprecated and will raise an exception in future versions of Python. It has no effect in Python 3. Use newline to control universal newlines mode. buffering is an optional integer used to set the buffering policy. Pass 0 to switch buffering off (only allowed in binary mode), 1 to select line buffering (only usable in text mode), and an integer > 1 to indicate the size of a fixed-size chunk buffer. When no buffering argument is given, the default buffering policy works as follows: * Binary files are buffered in fixed-size chunks; the size of the buffer is chosen using a heuristic trying to determine the underlying device's "block size" and falling back on `io.DEFAULT_BUFFER_SIZE`. On many systems, the buffer will typically be 4096 or 8192 bytes long. * "Interactive" text files (files for which isatty() returns True) use line buffering. Other text files use the policy described above for binary files. encoding is the str name of the encoding used to decode or encode the file. This should only be used in text mode. The default encoding is platform dependent, but any encoding supported by Python can be passed. See the codecs module for the list of supported encodings. errors is an optional string that specifies how encoding errors are to be handled---this argument should not be used in binary mode. Pass 'strict' to raise a ValueError exception if there is an encoding error (the default of None has the same effect), or pass 'ignore' to ignore errors. (Note that ignoring encoding errors can lead to data loss.) See the documentation for codecs.register for a list of the permitted encoding error strings. newline is a string controlling how universal newlines works (it only applies to text mode). It can be None, '', '\n', '\r', and '\r\n'. It works as follows: * On input, if newline is None, universal newlines mode is enabled. Lines in the input can end in '\n', '\r', or '\r\n', and these are translated into '\n' before being returned to the caller. If it is '', universal newline mode is enabled, but line endings are returned to the caller untranslated. If it has any of the other legal values, input lines are only terminated by the given string, and the line ending is returned to the caller untranslated. * On output, if newline is None, any '\n' characters written are translated to the system default line separator, os.linesep. If newline is '', no translation takes place. If newline is any of the other legal values, any '\n' characters written are translated to the given string. closedfd is a bool. If closefd is False, the underlying file descriptor will be kept open when the file is closed. This does not work when a file name is given and must be True in that case. The newly created file is non-inheritable. A custom opener can be used by passing a callable as *opener*. The underlying file descriptor for the file object is then obtained by calling *opener* with (*file*, *flags*). *opener* must return an open file descriptor (passing os.open as *opener* results in functionality similar to passing None). open() returns a file object whose type depends on the mode, and through which the standard file operations such as reading and writing are performed. When open() is used to open a file in a text mode ('w', 'r', 'wt', 'rt', etc.), it returns a TextIOWrapper. When used to open a file in a binary mode, the returned class varies: in read binary mode, it returns a BufferedReader; in write binary and append binary modes, it returns a BufferedWriter, and in read/write mode, it returns a BufferedRandom. It is also possible to use a string or bytearray as a file for both reading and writing. For strings StringIO can be used like a file opened in a text mode, and for bytes a BytesIO can be used like a file opened in a binary mode. zinvalid file: %rzinvalid mode: %rzinvalid buffering: %rN�invalid encoding: %r�invalid errors: %rzaxrwb+tU�xr �w�a�+�t�b�Uz4mode U cannot be combined with 'x', 'w', 'a', or '+'rz'U' mode is deprecatedrTz'can't have text and binary mode at oncer z)can't have read/write/append mode at oncez/must have exactly one of read/write/append modez-binary mode doesn't take an encoding argumentz+binary mode doesn't take an errors argumentz+binary mode doesn't take a newline argumentzaline buffering (buffering=1) isn't supported in binary mode, the default buffer size will be used�)�openerFrzinvalid buffering sizezcan't have unbuffered text I/Ozunknown mode: %r)� isinstance�int�os�fspath�str�bytes� TypeError�set�len� ValueError�warnings�warn�DeprecationWarning�RuntimeWarning�FileIO�isatty�DEFAULT_BUFFER_SIZE�fstat�fileno� st_blksize�OSError�AttributeError�BufferedRandom�BufferedWriter�BufferedReader� TextIOWrapper�mode�close)�filer4� buffering�encoding�errors�newline�closefdrZmodesZcreatingZreadingZwritingZ appendingZupdating�textZbinaryr$�raw�result�line_bufferingZbs�buffer�rA�/usr/lib64/python3.8/_pyio.py�open)s�{ ������� rCcCs ddl}|�dtd�t|d�S)azOpens the provided file with mode ``'rb'``. 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