mirror of
https://github.com/morpheus65535/bazarr
synced 2024-12-27 01:57:33 +00:00
655 lines
20 KiB
Python
655 lines
20 KiB
Python
# -*- coding: utf-8 -*-
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"""
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requests_toolbelt.multipart.encoder
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===================================
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This holds all of the implementation details of the MultipartEncoder
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"""
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import contextlib
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import io
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import os
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from uuid import uuid4
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import requests
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from .._compat import fields
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class FileNotSupportedError(Exception):
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"""File not supported error."""
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class MultipartEncoder(object):
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"""
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The ``MultipartEncoder`` object is a generic interface to the engine that
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will create a ``multipart/form-data`` body for you.
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The basic usage is:
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.. code-block:: python
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import requests
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from requests_toolbelt import MultipartEncoder
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encoder = MultipartEncoder({'field': 'value',
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'other_field', 'other_value'})
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r = requests.post('https://httpbin.org/post', data=encoder,
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headers={'Content-Type': encoder.content_type})
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If you do not need to take advantage of streaming the post body, you can
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also do:
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.. code-block:: python
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r = requests.post('https://httpbin.org/post',
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data=encoder.to_string(),
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headers={'Content-Type': encoder.content_type})
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If you want the encoder to use a specific order, you can use an
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OrderedDict or more simply, a list of tuples:
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.. code-block:: python
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encoder = MultipartEncoder([('field', 'value'),
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('other_field', 'other_value')])
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.. versionchanged:: 0.4.0
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You can also provide tuples as part values as you would provide them to
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requests' ``files`` parameter.
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.. code-block:: python
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encoder = MultipartEncoder({
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'field': ('file_name', b'{"a": "b"}', 'application/json',
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{'X-My-Header': 'my-value'})
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])
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.. warning::
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This object will end up directly in :mod:`httplib`. Currently,
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:mod:`httplib` has a hard-coded read size of **8192 bytes**. This
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means that it will loop until the file has been read and your upload
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could take a while. This is **not** a bug in requests. A feature is
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being considered for this object to allow you, the user, to specify
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what size should be returned on a read. If you have opinions on this,
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please weigh in on `this issue`_.
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.. _this issue:
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https://github.com/requests/toolbelt/issues/75
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"""
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def __init__(self, fields, boundary=None, encoding='utf-8'):
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#: Boundary value either passed in by the user or created
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self.boundary_value = boundary or uuid4().hex
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# Computed boundary
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self.boundary = '--{}'.format(self.boundary_value)
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#: Encoding of the data being passed in
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self.encoding = encoding
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# Pre-encoded boundary
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self._encoded_boundary = b''.join([
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encode_with(self.boundary, self.encoding),
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encode_with('\r\n', self.encoding)
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])
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#: Fields provided by the user
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self.fields = fields
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#: Whether or not the encoder is finished
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self.finished = False
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#: Pre-computed parts of the upload
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self.parts = []
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# Pre-computed parts iterator
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self._iter_parts = iter([])
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# The part we're currently working with
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self._current_part = None
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# Cached computation of the body's length
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self._len = None
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# Our buffer
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self._buffer = CustomBytesIO(encoding=encoding)
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# Pre-compute each part's headers
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self._prepare_parts()
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# Load boundary into buffer
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self._write_boundary()
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@property
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def len(self):
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"""Length of the multipart/form-data body.
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requests will first attempt to get the length of the body by calling
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``len(body)`` and then by checking for the ``len`` attribute.
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On 32-bit systems, the ``__len__`` method cannot return anything
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larger than an integer (in C) can hold. If the total size of the body
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is even slightly larger than 4GB users will see an OverflowError. This
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manifested itself in `bug #80`_.
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As such, we now calculate the length lazily as a property.
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.. _bug #80:
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https://github.com/requests/toolbelt/issues/80
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"""
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# If _len isn't already calculated, calculate, return, and set it
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return self._len or self._calculate_length()
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def __repr__(self):
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return '<MultipartEncoder: {!r}>'.format(self.fields)
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def _calculate_length(self):
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"""
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This uses the parts to calculate the length of the body.
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This returns the calculated length so __len__ can be lazy.
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"""
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boundary_len = len(self.boundary) # Length of --{boundary}
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# boundary length + header length + body length + len('\r\n') * 2
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self._len = sum(
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(boundary_len + total_len(p) + 4) for p in self.parts
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) + boundary_len + 4
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return self._len
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def _calculate_load_amount(self, read_size):
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"""This calculates how many bytes need to be added to the buffer.
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When a consumer read's ``x`` from the buffer, there are two cases to
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satisfy:
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1. Enough data in the buffer to return the requested amount
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2. Not enough data
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This function uses the amount of unread bytes in the buffer and
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determines how much the Encoder has to load before it can return the
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requested amount of bytes.
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:param int read_size: the number of bytes the consumer requests
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:returns: int -- the number of bytes that must be loaded into the
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buffer before the read can be satisfied. This will be strictly
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non-negative
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"""
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amount = read_size - total_len(self._buffer)
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return amount if amount > 0 else 0
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def _load(self, amount):
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"""Load ``amount`` number of bytes into the buffer."""
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self._buffer.smart_truncate()
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part = self._current_part or self._next_part()
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while amount == -1 or amount > 0:
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written = 0
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if part and not part.bytes_left_to_write():
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written += self._write(b'\r\n')
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written += self._write_boundary()
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part = self._next_part()
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if not part:
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written += self._write_closing_boundary()
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self.finished = True
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break
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written += part.write_to(self._buffer, amount)
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if amount != -1:
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amount -= written
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def _next_part(self):
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try:
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p = self._current_part = next(self._iter_parts)
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except StopIteration:
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p = None
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return p
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def _iter_fields(self):
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_fields = self.fields
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if hasattr(self.fields, 'items'):
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_fields = list(self.fields.items())
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for k, v in _fields:
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file_name = None
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file_type = None
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file_headers = None
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if isinstance(v, (list, tuple)):
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if len(v) == 2:
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file_name, file_pointer = v
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elif len(v) == 3:
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file_name, file_pointer, file_type = v
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else:
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file_name, file_pointer, file_type, file_headers = v
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else:
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file_pointer = v
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field = fields.RequestField(name=k, data=file_pointer,
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filename=file_name,
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headers=file_headers)
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field.make_multipart(content_type=file_type)
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yield field
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def _prepare_parts(self):
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"""This uses the fields provided by the user and creates Part objects.
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It populates the `parts` attribute and uses that to create a
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generator for iteration.
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"""
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enc = self.encoding
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self.parts = [Part.from_field(f, enc) for f in self._iter_fields()]
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self._iter_parts = iter(self.parts)
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def _write(self, bytes_to_write):
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"""Write the bytes to the end of the buffer.
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:param bytes bytes_to_write: byte-string (or bytearray) to append to
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the buffer
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:returns: int -- the number of bytes written
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"""
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return self._buffer.append(bytes_to_write)
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def _write_boundary(self):
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"""Write the boundary to the end of the buffer."""
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return self._write(self._encoded_boundary)
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def _write_closing_boundary(self):
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"""Write the bytes necessary to finish a multipart/form-data body."""
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with reset(self._buffer):
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self._buffer.seek(-2, 2)
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self._buffer.write(b'--\r\n')
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return 2
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def _write_headers(self, headers):
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"""Write the current part's headers to the buffer."""
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return self._write(encode_with(headers, self.encoding))
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@property
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def content_type(self):
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return str(
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'multipart/form-data; boundary={}'.format(self.boundary_value)
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)
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def to_string(self):
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"""Return the entirety of the data in the encoder.
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.. note::
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This simply reads all of the data it can. If you have started
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streaming or reading data from the encoder, this method will only
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return whatever data is left in the encoder.
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.. note::
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This method affects the internal state of the encoder. Calling
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this method will exhaust the encoder.
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:returns: the multipart message
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:rtype: bytes
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"""
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return self.read()
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def read(self, size=-1):
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"""Read data from the streaming encoder.
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:param int size: (optional), If provided, ``read`` will return exactly
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that many bytes. If it is not provided, it will return the
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remaining bytes.
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:returns: bytes
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"""
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if self.finished:
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return self._buffer.read(size)
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bytes_to_load = size
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if bytes_to_load != -1 and bytes_to_load is not None:
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bytes_to_load = self._calculate_load_amount(int(size))
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self._load(bytes_to_load)
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return self._buffer.read(size)
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def IDENTITY(monitor):
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return monitor
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class MultipartEncoderMonitor(object):
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"""
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An object used to monitor the progress of a :class:`MultipartEncoder`.
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The :class:`MultipartEncoder` should only be responsible for preparing and
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streaming the data. For anyone who wishes to monitor it, they shouldn't be
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using that instance to manage that as well. Using this class, they can
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monitor an encoder and register a callback. The callback receives the
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instance of the monitor.
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To use this monitor, you construct your :class:`MultipartEncoder` as you
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normally would.
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.. code-block:: python
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from requests_toolbelt import (MultipartEncoder,
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MultipartEncoderMonitor)
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import requests
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def callback(monitor):
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# Do something with this information
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pass
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m = MultipartEncoder(fields={'field0': 'value0'})
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monitor = MultipartEncoderMonitor(m, callback)
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headers = {'Content-Type': monitor.content_type}
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r = requests.post('https://httpbin.org/post', data=monitor,
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headers=headers)
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Alternatively, if your use case is very simple, you can use the following
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pattern.
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.. code-block:: python
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from requests_toolbelt import MultipartEncoderMonitor
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import requests
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def callback(monitor):
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# Do something with this information
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pass
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monitor = MultipartEncoderMonitor.from_fields(
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fields={'field0': 'value0'}, callback
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)
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headers = {'Content-Type': montior.content_type}
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r = requests.post('https://httpbin.org/post', data=monitor,
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headers=headers)
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"""
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def __init__(self, encoder, callback=None):
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#: Instance of the :class:`MultipartEncoder` being monitored
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self.encoder = encoder
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#: Optionally function to call after a read
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self.callback = callback or IDENTITY
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#: Number of bytes already read from the :class:`MultipartEncoder`
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#: instance
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self.bytes_read = 0
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#: Avoid the same problem in bug #80
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self.len = self.encoder.len
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@classmethod
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def from_fields(cls, fields, boundary=None, encoding='utf-8',
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callback=None):
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encoder = MultipartEncoder(fields, boundary, encoding)
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return cls(encoder, callback)
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@property
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def content_type(self):
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return self.encoder.content_type
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def to_string(self):
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return self.read()
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def read(self, size=-1):
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string = self.encoder.read(size)
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self.bytes_read += len(string)
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self.callback(self)
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return string
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def encode_with(string, encoding):
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"""Encoding ``string`` with ``encoding`` if necessary.
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:param str string: If string is a bytes object, it will not encode it.
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Otherwise, this function will encode it with the provided encoding.
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:param str encoding: The encoding with which to encode string.
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:returns: encoded bytes object
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"""
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if not (string is None or isinstance(string, bytes)):
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return string.encode(encoding)
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return string
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def readable_data(data, encoding):
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"""Coerce the data to an object with a ``read`` method."""
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if hasattr(data, 'read'):
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return data
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return CustomBytesIO(data, encoding)
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def total_len(o):
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if hasattr(o, '__len__'):
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return len(o)
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if hasattr(o, 'len'):
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return o.len
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if hasattr(o, 'fileno'):
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try:
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fileno = o.fileno()
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except io.UnsupportedOperation:
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pass
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else:
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return os.fstat(fileno).st_size
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if hasattr(o, 'getvalue'):
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# e.g. BytesIO, cStringIO.StringIO
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return len(o.getvalue())
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@contextlib.contextmanager
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def reset(buffer):
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"""Keep track of the buffer's current position and write to the end.
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This is a context manager meant to be used when adding data to the buffer.
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It eliminates the need for every function to be concerned with the
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position of the cursor in the buffer.
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"""
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original_position = buffer.tell()
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buffer.seek(0, 2)
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yield
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buffer.seek(original_position, 0)
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def coerce_data(data, encoding):
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"""Ensure that every object's __len__ behaves uniformly."""
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if not isinstance(data, CustomBytesIO):
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if hasattr(data, 'getvalue'):
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return CustomBytesIO(data.getvalue(), encoding)
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if hasattr(data, 'fileno'):
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return FileWrapper(data)
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if not hasattr(data, 'read'):
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return CustomBytesIO(data, encoding)
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return data
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def to_list(fields):
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if hasattr(fields, 'items'):
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return list(fields.items())
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return list(fields)
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class Part(object):
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def __init__(self, headers, body):
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self.headers = headers
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self.body = body
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self.headers_unread = True
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self.len = len(self.headers) + total_len(self.body)
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@classmethod
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def from_field(cls, field, encoding):
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"""Create a part from a Request Field generated by urllib3."""
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headers = encode_with(field.render_headers(), encoding)
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body = coerce_data(field.data, encoding)
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return cls(headers, body)
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def bytes_left_to_write(self):
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"""Determine if there are bytes left to write.
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:returns: bool -- ``True`` if there are bytes left to write, otherwise
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``False``
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"""
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to_read = 0
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if self.headers_unread:
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to_read += len(self.headers)
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return (to_read + total_len(self.body)) > 0
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def write_to(self, buffer, size):
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"""Write the requested amount of bytes to the buffer provided.
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The number of bytes written may exceed size on the first read since we
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load the headers ambitiously.
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:param CustomBytesIO buffer: buffer we want to write bytes to
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:param int size: number of bytes requested to be written to the buffer
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:returns: int -- number of bytes actually written
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"""
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written = 0
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if self.headers_unread:
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written += buffer.append(self.headers)
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self.headers_unread = False
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while total_len(self.body) > 0 and (size == -1 or written < size):
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amount_to_read = size
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if size != -1:
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amount_to_read = size - written
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written += buffer.append(self.body.read(amount_to_read))
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return written
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class CustomBytesIO(io.BytesIO):
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def __init__(self, buffer=None, encoding='utf-8'):
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buffer = encode_with(buffer, encoding)
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super(CustomBytesIO, self).__init__(buffer)
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def _get_end(self):
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current_pos = self.tell()
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self.seek(0, 2)
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length = self.tell()
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self.seek(current_pos, 0)
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return length
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@property
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def len(self):
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length = self._get_end()
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return length - self.tell()
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def append(self, bytes):
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with reset(self):
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written = self.write(bytes)
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return written
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def smart_truncate(self):
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to_be_read = total_len(self)
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already_read = self._get_end() - to_be_read
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if already_read >= to_be_read:
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old_bytes = self.read()
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self.seek(0, 0)
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self.truncate()
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self.write(old_bytes)
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self.seek(0, 0) # We want to be at the beginning
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class FileWrapper(object):
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def __init__(self, file_object):
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self.fd = file_object
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@property
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def len(self):
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return total_len(self.fd) - self.fd.tell()
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def read(self, length=-1):
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return self.fd.read(length)
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class FileFromURLWrapper(object):
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"""File from URL wrapper.
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The :class:`FileFromURLWrapper` object gives you the ability to stream file
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from provided URL in chunks by :class:`MultipartEncoder`.
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Provide a stateless solution for streaming file from one server to another.
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You can use the :class:`FileFromURLWrapper` without a session or with
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a session as demonstated by the examples below:
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.. code-block:: python
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# no session
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import requests
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from requests_toolbelt import MultipartEncoder, FileFromURLWrapper
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url = 'https://httpbin.org/image/png'
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streaming_encoder = MultipartEncoder(
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fields={
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'file': FileFromURLWrapper(url)
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}
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)
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r = requests.post(
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'https://httpbin.org/post', data=streaming_encoder,
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headers={'Content-Type': streaming_encoder.content_type}
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)
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.. code-block:: python
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# using a session
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import requests
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from requests_toolbelt import MultipartEncoder, FileFromURLWrapper
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session = requests.Session()
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url = 'https://httpbin.org/image/png'
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streaming_encoder = MultipartEncoder(
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fields={
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'file': FileFromURLWrapper(url, session=session)
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}
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)
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r = session.post(
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'https://httpbin.org/post', data=streaming_encoder,
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headers={'Content-Type': streaming_encoder.content_type}
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)
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"""
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def __init__(self, file_url, session=None):
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self.session = session or requests.Session()
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requested_file = self._request_for_file(file_url)
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self.len = int(requested_file.headers['content-length'])
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self.raw_data = requested_file.raw
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def _request_for_file(self, file_url):
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"""Make call for file under provided URL."""
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response = self.session.get(file_url, stream=True)
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content_length = response.headers.get('content-length', None)
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if content_length is None:
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error_msg = (
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"Data from provided URL {url} is not supported. Lack of "
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"content-length Header in requested file response.".format(
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url=file_url)
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)
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raise FileNotSupportedError(error_msg)
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elif not content_length.isdigit():
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error_msg = (
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"Data from provided URL {url} is not supported. content-length"
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" header value is not a digit.".format(url=file_url)
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)
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raise FileNotSupportedError(error_msg)
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return response
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def read(self, chunk_size):
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"""Read file in chunks."""
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chunk_size = chunk_size if chunk_size >= 0 else self.len
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chunk = self.raw_data.read(chunk_size) or b''
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self.len -= len(chunk) if chunk else 0 # left to read
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return chunk
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