mirror of
https://github.com/SickGear/SickGear.git
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925 lines
32 KiB
Python
925 lines
32 KiB
Python
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# -*- coding: utf-8 -*-
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#
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# Copyright (C) 2021 Chris Caron <lead2gold@gmail.com>
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# All rights reserved.
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#
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# This code is licensed under the MIT License.
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#
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# Permission is hereby granted, free of charge, to any person obtaining a copy
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# of this software and associated documentation files(the "Software"), to deal
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# in the Software without restriction, including without limitation the rights
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# to use, copy, modify, merge, publish, distribute, sublicense, and / or sell
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# copies of the Software, and to permit persons to whom the Software is
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# furnished to do so, subject to the following conditions :
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#
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# The above copyright notice and this permission notice shall be included in
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# all copies or substantial portions of the Software.
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#
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# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.IN NO EVENT SHALL THE
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# AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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# OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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# THE SOFTWARE.
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# API Information:
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# - https://docs.aws.amazon.com/ses/latest/APIReference/API_SendRawEmail.html
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#
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# AWS Credentials (access_key and secret_access_key)
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# - https://docs.aws.amazon.com/sdk-for-java/v1/developer-guide/\
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# setup-credentials.html
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# - https://docs.aws.amazon.com/toolkit-for-eclipse/v1/user-guide/\
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# setup-credentials.html
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#
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# Other systems write these credentials to:
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# - ~/.aws/credentials on Linux, macOS, or Unix
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# - C:\Users\USERNAME\.aws\credentials on Windows
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#
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#
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# To get A users access key ID and secret access key
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#
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# 1. Open the IAM console: https://console.aws.amazon.com/iam/home
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# 2. On the navigation menu, choose Users.
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# 3. Choose your IAM user name (not the check box).
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# 4. Open the Security credentials tab, and then choose:
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# Create Access key - Programmatic access
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# 5. To see the new access key, choose Show. Your credentials resemble
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# the following:
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# Access key ID: AKIAIOSFODNN7EXAMPLE
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# Secret access key: wJalrXUtnFEMI/K7MDENG/bPxRfiCYEXAMPLEKEY
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#
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# To download the key pair, choose Download .csv file. Store the keys
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# The account requries this permssion to 'SES v2 : SendEmail' in order to
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# work
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#
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# To get the root users account (if you're logged in as that) you can
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# visit: https://console.aws.amazon.com/iam/home#/\
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# security_credentials$access_key
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#
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# This information is vital to work with SES
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# To use/test the service, i logged into the portal via:
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# - https://portal.aws.amazon.com
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#
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# Go to the dashboard of the Amazon SES (Simple Email Service)
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# 1. You must have a verified identity; click on that option and create one
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# if you don't already have one. Until it's verified, you won't be able to
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# do the next step.
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# 2. From here you'll be able to retrieve your ARN associated with your
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# identity you want Apprise to send emails on behalf. It might look
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# something like:
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# arn:aws:ses:us-east-2:133216123003:identity/user@example.com
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#
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# This is your ARN (Amazon Record Name)
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#
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#
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import re
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import hmac
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import base64
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import requests
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from hashlib import sha256
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from datetime import datetime
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from collections import OrderedDict
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from xml.etree import ElementTree
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from email.mime.text import MIMEText
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from email.mime.application import MIMEApplication
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from email.mime.multipart import MIMEMultipart
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from email.utils import formataddr
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from email.header import Header
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from urllib.parse import quote
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from .NotifyBase import NotifyBase
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from ..URLBase import PrivacyMode
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from ..common import NotifyFormat
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from ..common import NotifyType
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from ..utils import parse_emails
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from ..utils import validate_regex
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from ..AppriseLocale import gettext_lazy as _
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from ..utils import is_email
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# Our Regin Identifier
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# support us-gov-west-1 syntax as well
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IS_REGION = re.compile(
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r'^\s*(?P<country>[a-z]{2})-(?P<area>[a-z-]+?)-(?P<no>[0-9]+)\s*$', re.I)
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# Extend HTTP Error Messages
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AWS_HTTP_ERROR_MAP = {
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403: 'Unauthorized - Invalid Access/Secret Key Combination.',
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}
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class NotifySES(NotifyBase):
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"""
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A wrapper for AWS SES (Amazon Simple Email Service)
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"""
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# The default descriptive name associated with the Notification
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service_name = 'AWS Simple Email Service (SES)'
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# The services URL
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service_url = 'https://aws.amazon.com/ses/'
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# The default secure protocol
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secure_protocol = 'ses'
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# A URL that takes you to the setup/help of the specific protocol
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setup_url = 'https://github.com/caronc/apprise/wiki/Notify_ses'
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# AWS is pretty good for handling data load so request limits
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# can occur in much shorter bursts
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request_rate_per_sec = 2.5
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# Default Notify Format
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notify_format = NotifyFormat.HTML
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# Define object templates
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templates = (
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'{schema}://{from_email}/{access_key_id}/{secret_access_key}/'
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'{region}/{targets}',
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'{schema}://{from_email}/{access_key_id}/{secret_access_key}/'
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'{region}',
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)
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# Define our template tokens
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template_tokens = dict(NotifyBase.template_tokens, **{
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'from_email': {
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'name': _('From Email'),
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'type': 'string',
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'map_to': 'from_addr',
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},
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'access_key_id': {
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'name': _('Access Key ID'),
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'type': 'string',
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'private': True,
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'required': True,
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},
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'secret_access_key': {
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'name': _('Secret Access Key'),
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'type': 'string',
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'private': True,
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'required': True,
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},
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'region': {
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'name': _('Region'),
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'type': 'string',
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'regex': (r'^[a-z]{2}-[a-z-]+?-[0-9]+$', 'i'),
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'map_to': 'region_name',
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},
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'targets': {
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'name': _('Target Emails'),
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'type': 'list:string',
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},
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})
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# Define our template arguments
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template_args = dict(NotifyBase.template_args, **{
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'to': {
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'alias_of': 'targets',
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},
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'from': {
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'alias_of': 'from_email',
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},
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'reply': {
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'name': _('Reply To Email'),
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'type': 'string',
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'map_to': 'reply_to',
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},
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'name': {
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'name': _('From Name'),
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'type': 'string',
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'map_to': 'from_name',
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},
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'cc': {
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'name': _('Carbon Copy'),
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'type': 'list:string',
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},
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'bcc': {
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'name': _('Blind Carbon Copy'),
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'type': 'list:string',
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},
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'access': {
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'alias_of': 'access_key_id',
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},
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'secret': {
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'alias_of': 'secret_access_key',
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},
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'region': {
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'alias_of': 'region',
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},
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})
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def __init__(self, access_key_id, secret_access_key, region_name,
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reply_to=None, from_addr=None, from_name=None, targets=None,
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cc=None, bcc=None, **kwargs):
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"""
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Initialize Notify AWS SES Object
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"""
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super().__init__(**kwargs)
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# Store our AWS API Access Key
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self.aws_access_key_id = validate_regex(access_key_id)
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if not self.aws_access_key_id:
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msg = 'An invalid AWS Access Key ID was specified.'
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self.logger.warning(msg)
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raise TypeError(msg)
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# Store our AWS API Secret Access key
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self.aws_secret_access_key = validate_regex(secret_access_key)
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if not self.aws_secret_access_key:
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msg = 'An invalid AWS Secret Access Key ' \
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'({}) was specified.'.format(secret_access_key)
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self.logger.warning(msg)
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raise TypeError(msg)
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# Acquire our AWS Region Name:
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# eg. us-east-1, cn-north-1, us-west-2, ...
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self.aws_region_name = validate_regex(
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region_name, *self.template_tokens['region']['regex'])
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if not self.aws_region_name:
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msg = 'An invalid AWS Region ({}) was specified.'.format(
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region_name)
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self.logger.warning(msg)
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raise TypeError(msg)
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# Acquire Email 'To'
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self.targets = list()
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# Acquire Carbon Copies
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self.cc = set()
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# Acquire Blind Carbon Copies
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self.bcc = set()
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# For tracking our email -> name lookups
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self.names = {}
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# Set our notify_url based on our region
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self.notify_url = 'https://email.{}.amazonaws.com'\
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.format(self.aws_region_name)
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# AWS Service Details
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self.aws_service_name = 'ses'
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self.aws_canonical_uri = '/'
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# AWS Authentication Details
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self.aws_auth_version = 'AWS4'
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self.aws_auth_algorithm = 'AWS4-HMAC-SHA256'
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self.aws_auth_request = 'aws4_request'
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# Get our From username (if specified)
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self.from_name = from_name
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if from_addr:
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self.from_addr = from_addr
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else:
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# Get our from email address
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self.from_addr = '{user}@{host}'.format(
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user=self.user, host=self.host) if self.user else None
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if not (self.from_addr and is_email(self.from_addr)):
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msg = 'An invalid AWS From ({}) was specified.'.format(
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'{user}@{host}'.format(user=self.user, host=self.host))
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self.logger.warning(msg)
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raise TypeError(msg)
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self.reply_to = None
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if reply_to:
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result = is_email(reply_to)
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if not result:
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msg = 'An invalid AWS Reply To ({}) was specified.'.format(
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'{user}@{host}'.format(user=self.user, host=self.host))
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self.logger.warning(msg)
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raise TypeError(msg)
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self.reply_to = (
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result['name'] if result['name'] else False,
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result['full_email'])
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if targets:
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# Validate recipients (to:) and drop bad ones:
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for recipient in parse_emails(targets):
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result = is_email(recipient)
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if result:
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self.targets.append(
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(result['name'] if result['name'] else False,
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result['full_email']))
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continue
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self.logger.warning(
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'Dropped invalid To email '
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'({}) specified.'.format(recipient),
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)
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else:
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# If our target email list is empty we want to add ourselves to it
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self.targets.append(
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(self.from_name if self.from_name else False, self.from_addr))
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# Validate recipients (cc:) and drop bad ones:
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for recipient in parse_emails(cc):
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email = is_email(recipient)
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if email:
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self.cc.add(email['full_email'])
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# Index our name (if one exists)
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self.names[email['full_email']] = \
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email['name'] if email['name'] else False
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continue
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self.logger.warning(
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'Dropped invalid Carbon Copy email '
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'({}) specified.'.format(recipient),
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)
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# Validate recipients (bcc:) and drop bad ones:
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for recipient in parse_emails(bcc):
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email = is_email(recipient)
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if email:
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self.bcc.add(email['full_email'])
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# Index our name (if one exists)
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self.names[email['full_email']] = \
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email['name'] if email['name'] else False
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continue
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self.logger.warning(
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'Dropped invalid Blind Carbon Copy email '
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'({}) specified.'.format(recipient),
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)
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return
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def send(self, body, title='', notify_type=NotifyType.INFO, attach=None,
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**kwargs):
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"""
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wrapper to send_notification since we can alert more then one channel
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"""
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if not self.targets:
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# There is no one to email; we're done
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self.logger.warning(
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'There are no SES email recipients to notify')
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return False
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# error tracking (used for function return)
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has_error = False
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# Initialize our default from name
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from_name = self.from_name if self.from_name \
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else self.reply_to[0] if self.reply_to and \
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self.reply_to[0] else self.app_desc
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reply_to = (
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from_name, self.from_addr
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if not self.reply_to else self.reply_to[1])
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# Create a copy of the targets list
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emails = list(self.targets)
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while len(emails):
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# Get our email to notify
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to_name, to_addr = emails.pop(0)
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# Strip target out of cc list if in To or Bcc
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cc = (self.cc - self.bcc - set([to_addr]))
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# Strip target out of bcc list if in To
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bcc = (self.bcc - set([to_addr]))
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# Format our cc addresses to support the Name field
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cc = [formataddr(
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(self.names.get(addr, False), addr), charset='utf-8')
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for addr in cc]
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# Format our bcc addresses to support the Name field
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bcc = [formataddr(
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(self.names.get(addr, False), addr), charset='utf-8')
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for addr in bcc]
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self.logger.debug('Email From: {} <{}>'.format(
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quote(reply_to[0], ' '),
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quote(reply_to[1], '@ ')))
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self.logger.debug('Email To: {}'.format(to_addr))
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if cc:
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self.logger.debug('Email Cc: {}'.format(', '.join(cc)))
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if bcc:
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self.logger.debug('Email Bcc: {}'.format(', '.join(bcc)))
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# Prepare Email Message
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if self.notify_format == NotifyFormat.HTML:
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content = MIMEText(body, 'html', 'utf-8')
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else:
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content = MIMEText(body, 'plain', 'utf-8')
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# Create a Multipart container if there is an attachment
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base = MIMEMultipart() if attach else content
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# TODO: Deduplicate with `NotifyEmail`?
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base['Subject'] = Header(title, 'utf-8')
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base['From'] = formataddr(
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(from_name if from_name else False, self.from_addr),
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charset='utf-8')
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base['To'] = formataddr((to_name, to_addr), charset='utf-8')
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if reply_to[1] != self.from_addr:
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base['Reply-To'] = formataddr(reply_to, charset='utf-8')
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base['Cc'] = ','.join(cc)
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base['Date'] = \
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datetime.utcnow().strftime("%a, %d %b %Y %H:%M:%S +0000")
|
||
|
base['X-Application'] = self.app_id
|
||
|
|
||
|
if attach:
|
||
|
# First attach our body to our content as the first element
|
||
|
base.attach(content)
|
||
|
|
||
|
# Now store our attachments
|
||
|
for attachment in attach:
|
||
|
if not attachment:
|
||
|
# We could not load the attachment; take an early
|
||
|
# exit since this isn't what the end user wanted
|
||
|
|
||
|
# We could not access the attachment
|
||
|
self.logger.error(
|
||
|
'Could not access attachment {}.'.format(
|
||
|
attachment.url(privacy=True)))
|
||
|
|
||
|
return False
|
||
|
|
||
|
self.logger.debug(
|
||
|
'Preparing Email attachment {}'.format(
|
||
|
attachment.url(privacy=True)))
|
||
|
|
||
|
with open(attachment.path, "rb") as abody:
|
||
|
app = MIMEApplication(abody.read())
|
||
|
app.set_type(attachment.mimetype)
|
||
|
|
||
|
app.add_header(
|
||
|
'Content-Disposition',
|
||
|
'attachment; filename="{}"'.format(
|
||
|
Header(attachment.name, 'utf-8')),
|
||
|
)
|
||
|
|
||
|
base.attach(app)
|
||
|
|
||
|
# Prepare our payload object
|
||
|
payload = {
|
||
|
'Action': 'SendRawEmail',
|
||
|
'Version': '2010-12-01',
|
||
|
'RawMessage.Data': base64.b64encode(
|
||
|
base.as_string().encode('utf-8')).decode('utf-8')
|
||
|
}
|
||
|
|
||
|
for no, email in enumerate(([to_addr] + bcc + cc), start=1):
|
||
|
payload['Destinations.member.{}'.format(no)] = email
|
||
|
|
||
|
# Specify from address
|
||
|
payload['Source'] = '{} <{}>'.format(
|
||
|
quote(from_name, ' '),
|
||
|
quote(self.from_addr, '@ '))
|
||
|
|
||
|
(result, response) = self._post(payload=payload, to=to_addr)
|
||
|
if not result:
|
||
|
# Mark our failure
|
||
|
has_error = True
|
||
|
continue
|
||
|
|
||
|
return not has_error
|
||
|
|
||
|
def _post(self, payload, to):
|
||
|
"""
|
||
|
Wrapper to request.post() to manage it's response better and make
|
||
|
the send() function cleaner and easier to maintain.
|
||
|
|
||
|
This function returns True if the _post was successful and False
|
||
|
if it wasn't.
|
||
|
"""
|
||
|
|
||
|
# Always call throttle before any remote server i/o is made; for AWS
|
||
|
# time plays a huge factor in the headers being sent with the payload.
|
||
|
# So for AWS (SES) requests we must throttle before they're generated
|
||
|
# and not directly before the i/o call like other notification
|
||
|
# services do.
|
||
|
self.throttle()
|
||
|
|
||
|
# Convert our payload from a dict() into a urlencoded string
|
||
|
payload = NotifySES.urlencode(payload)
|
||
|
|
||
|
# Prepare our Notification URL
|
||
|
# Prepare our AWS Headers based on our payload
|
||
|
headers = self.aws_prepare_request(payload)
|
||
|
|
||
|
self.logger.debug('AWS SES POST URL: %s (cert_verify=%r)' % (
|
||
|
self.notify_url, self.verify_certificate,
|
||
|
))
|
||
|
self.logger.debug('AWS SES Payload (%d bytes)', len(payload))
|
||
|
|
||
|
try:
|
||
|
r = requests.post(
|
||
|
self.notify_url,
|
||
|
data=payload,
|
||
|
headers=headers,
|
||
|
verify=self.verify_certificate,
|
||
|
timeout=self.request_timeout,
|
||
|
)
|
||
|
|
||
|
if r.status_code != requests.codes.ok:
|
||
|
# We had a problem
|
||
|
status_str = \
|
||
|
NotifySES.http_response_code_lookup(
|
||
|
r.status_code, AWS_HTTP_ERROR_MAP)
|
||
|
|
||
|
self.logger.warning(
|
||
|
'Failed to send AWS SES notification to {}: '
|
||
|
'{}{}error={}.'.format(
|
||
|
to,
|
||
|
status_str,
|
||
|
', ' if status_str else '',
|
||
|
r.status_code))
|
||
|
|
||
|
self.logger.debug('Response Details:\r\n{}'.format(r.content))
|
||
|
|
||
|
return (False, NotifySES.aws_response_to_dict(r.text))
|
||
|
|
||
|
else:
|
||
|
self.logger.info(
|
||
|
'Sent AWS SES notification to "%s".' % (to))
|
||
|
|
||
|
except requests.RequestException as e:
|
||
|
self.logger.warning(
|
||
|
'A Connection error occurred sending AWS SES '
|
||
|
'notification to "%s".' % (to),
|
||
|
)
|
||
|
self.logger.debug('Socket Exception: %s' % str(e))
|
||
|
return (False, NotifySES.aws_response_to_dict(None))
|
||
|
|
||
|
return (True, NotifySES.aws_response_to_dict(r.text))
|
||
|
|
||
|
def aws_prepare_request(self, payload, reference=None):
|
||
|
"""
|
||
|
Takes the intended payload and returns the headers for it.
|
||
|
|
||
|
The payload is presumed to have been already urlencoded()
|
||
|
|
||
|
"""
|
||
|
|
||
|
# Define our AWS SES header
|
||
|
headers = {
|
||
|
'User-Agent': self.app_id,
|
||
|
'Content-Type': 'application/x-www-form-urlencoded; charset=utf-8',
|
||
|
|
||
|
# Populated below
|
||
|
'Content-Length': 0,
|
||
|
'Authorization': None,
|
||
|
'X-Amz-Date': None,
|
||
|
}
|
||
|
|
||
|
# Get a reference time (used for header construction)
|
||
|
reference = datetime.utcnow()
|
||
|
|
||
|
# Provide Content-Length
|
||
|
headers['Content-Length'] = str(len(payload))
|
||
|
|
||
|
# Amazon Date Format
|
||
|
amzdate = reference.strftime('%Y%m%dT%H%M%SZ')
|
||
|
headers['X-Amz-Date'] = amzdate
|
||
|
|
||
|
# Credential Scope
|
||
|
scope = '{date}/{region}/{service}/{request}'.format(
|
||
|
date=reference.strftime('%Y%m%d'),
|
||
|
region=self.aws_region_name,
|
||
|
service=self.aws_service_name,
|
||
|
request=self.aws_auth_request,
|
||
|
)
|
||
|
|
||
|
# Similar to headers; but a subset. keys must be lowercase
|
||
|
signed_headers = OrderedDict([
|
||
|
('content-type', headers['Content-Type']),
|
||
|
('host', 'email.{region}.amazonaws.com'.format(
|
||
|
region=self.aws_region_name)),
|
||
|
('x-amz-date', headers['X-Amz-Date']),
|
||
|
])
|
||
|
|
||
|
#
|
||
|
# Build Canonical Request Object
|
||
|
#
|
||
|
canonical_request = '\n'.join([
|
||
|
# Method
|
||
|
u'POST',
|
||
|
|
||
|
# URL
|
||
|
self.aws_canonical_uri,
|
||
|
|
||
|
# Query String (none set for POST)
|
||
|
'',
|
||
|
|
||
|
# Header Content (must include \n at end!)
|
||
|
# All entries except characters in amazon date must be
|
||
|
# lowercase
|
||
|
'\n'.join(['%s:%s' % (k, v)
|
||
|
for k, v in signed_headers.items()]) + '\n',
|
||
|
|
||
|
# Header Entries (in same order identified above)
|
||
|
';'.join(signed_headers.keys()),
|
||
|
|
||
|
# Payload
|
||
|
sha256(payload.encode('utf-8')).hexdigest(),
|
||
|
])
|
||
|
|
||
|
# Prepare Unsigned Signature
|
||
|
to_sign = '\n'.join([
|
||
|
self.aws_auth_algorithm,
|
||
|
amzdate,
|
||
|
scope,
|
||
|
sha256(canonical_request.encode('utf-8')).hexdigest(),
|
||
|
])
|
||
|
|
||
|
# Our Authorization header
|
||
|
headers['Authorization'] = ', '.join([
|
||
|
'{algorithm} Credential={key}/{scope}'.format(
|
||
|
algorithm=self.aws_auth_algorithm,
|
||
|
key=self.aws_access_key_id,
|
||
|
scope=scope,
|
||
|
),
|
||
|
'SignedHeaders={signed_headers}'.format(
|
||
|
signed_headers=';'.join(signed_headers.keys()),
|
||
|
),
|
||
|
'Signature={signature}'.format(
|
||
|
signature=self.aws_auth_signature(to_sign, reference)
|
||
|
),
|
||
|
])
|
||
|
|
||
|
return headers
|
||
|
|
||
|
def aws_auth_signature(self, to_sign, reference):
|
||
|
"""
|
||
|
Generates a AWS v4 signature based on provided payload
|
||
|
which should be in the form of a string.
|
||
|
"""
|
||
|
|
||
|
def _sign(key, msg, to_hex=False):
|
||
|
"""
|
||
|
Perform AWS Signing
|
||
|
"""
|
||
|
if to_hex:
|
||
|
return hmac.new(key, msg.encode('utf-8'), sha256).hexdigest()
|
||
|
return hmac.new(key, msg.encode('utf-8'), sha256).digest()
|
||
|
|
||
|
_date = _sign((
|
||
|
self.aws_auth_version +
|
||
|
self.aws_secret_access_key).encode('utf-8'),
|
||
|
reference.strftime('%Y%m%d'))
|
||
|
|
||
|
_region = _sign(_date, self.aws_region_name)
|
||
|
_service = _sign(_region, self.aws_service_name)
|
||
|
_signed = _sign(_service, self.aws_auth_request)
|
||
|
return _sign(_signed, to_sign, to_hex=True)
|
||
|
|
||
|
@staticmethod
|
||
|
def aws_response_to_dict(aws_response):
|
||
|
"""
|
||
|
Takes an AWS Response object as input and returns it as a dictionary
|
||
|
but not befor extracting out what is useful to us first.
|
||
|
|
||
|
eg:
|
||
|
IN:
|
||
|
|
||
|
<SendRawEmailResponse
|
||
|
xmlns="http://ses.amazonaws.com/doc/2010-12-01/">
|
||
|
<SendRawEmailResult>
|
||
|
<MessageId>
|
||
|
010f017d87656ee2-a2ea291f-79ea-
|
||
|
44f3-9d25-00d041de3007-000000</MessageId>
|
||
|
</SendRawEmailResult>
|
||
|
<ResponseMetadata>
|
||
|
<RequestId>7abb454e-904b-4e46-a23c-2f4d2fc127a6</RequestId>
|
||
|
</ResponseMetadata>
|
||
|
</SendRawEmailResponse>
|
||
|
|
||
|
OUT:
|
||
|
{
|
||
|
'type': 'SendRawEmailResponse',
|
||
|
'message_id': '010f017d87656ee2-a2ea291f-79ea-
|
||
|
44f3-9d25-00d041de3007-000000',
|
||
|
'request_id': '7abb454e-904b-4e46-a23c-2f4d2fc127a6',
|
||
|
}
|
||
|
"""
|
||
|
|
||
|
# Define ourselves a set of directives we want to keep if found and
|
||
|
# then identify the value we want to map them to in our response
|
||
|
# object
|
||
|
aws_keep_map = {
|
||
|
'RequestId': 'request_id',
|
||
|
'MessageId': 'message_id',
|
||
|
|
||
|
# Error Message Handling
|
||
|
'Type': 'error_type',
|
||
|
'Code': 'error_code',
|
||
|
'Message': 'error_message',
|
||
|
}
|
||
|
|
||
|
# A default response object that we'll manipulate as we pull more data
|
||
|
# from our AWS Response object
|
||
|
response = {
|
||
|
'type': None,
|
||
|
'request_id': None,
|
||
|
'message_id': None,
|
||
|
}
|
||
|
|
||
|
try:
|
||
|
# we build our tree, but not before first eliminating any
|
||
|
# reference to namespacing (if present) as it makes parsing
|
||
|
# the tree so much easier.
|
||
|
root = ElementTree.fromstring(
|
||
|
re.sub(' xmlns="[^"]+"', '', aws_response, count=1))
|
||
|
|
||
|
# Store our response tag object name
|
||
|
response['type'] = str(root.tag)
|
||
|
|
||
|
def _xml_iter(root, response):
|
||
|
if len(root) > 0:
|
||
|
for child in root:
|
||
|
# use recursion to parse everything
|
||
|
_xml_iter(child, response)
|
||
|
|
||
|
elif root.tag in aws_keep_map.keys():
|
||
|
response[aws_keep_map[root.tag]] = (root.text).strip()
|
||
|
|
||
|
# Recursivly iterate over our AWS Response to extract the
|
||
|
# fields we're interested in in efforts to populate our response
|
||
|
# object.
|
||
|
_xml_iter(root, response)
|
||
|
|
||
|
except (ElementTree.ParseError, TypeError):
|
||
|
# bad data just causes us to generate a bad response
|
||
|
pass
|
||
|
|
||
|
return response
|
||
|
|
||
|
def url(self, privacy=False, *args, **kwargs):
|
||
|
"""
|
||
|
Returns the URL built dynamically based on specified arguments.
|
||
|
"""
|
||
|
|
||
|
# Acquire any global URL parameters
|
||
|
params = self.url_parameters(privacy=privacy, *args, **kwargs)
|
||
|
|
||
|
if self.from_name is not None:
|
||
|
# from_name specified; pass it back on the url
|
||
|
params['name'] = self.from_name
|
||
|
|
||
|
if self.cc:
|
||
|
# Handle our Carbon Copy Addresses
|
||
|
params['cc'] = ','.join(
|
||
|
['{}{}'.format(
|
||
|
'' if not e not in self.names
|
||
|
else '{}:'.format(self.names[e]), e) for e in self.cc])
|
||
|
|
||
|
if self.bcc:
|
||
|
# Handle our Blind Carbon Copy Addresses
|
||
|
params['bcc'] = ','.join(self.bcc)
|
||
|
|
||
|
if self.reply_to:
|
||
|
# Handle our reply to address
|
||
|
params['reply'] = '{} <{}>'.format(*self.reply_to) \
|
||
|
if self.reply_to[0] else self.reply_to[1]
|
||
|
|
||
|
# a simple boolean check as to whether we display our target emails
|
||
|
# or not
|
||
|
has_targets = \
|
||
|
not (len(self.targets) == 1
|
||
|
and self.targets[0][1] == self.from_addr)
|
||
|
|
||
|
return '{schema}://{from_addr}/{key_id}/{key_secret}/{region}/' \
|
||
|
'{targets}/?{params}'.format(
|
||
|
schema=self.secure_protocol,
|
||
|
from_addr=NotifySES.quote(self.from_addr, safe='@'),
|
||
|
key_id=self.pprint(self.aws_access_key_id, privacy, safe=''),
|
||
|
key_secret=self.pprint(
|
||
|
self.aws_secret_access_key, privacy,
|
||
|
mode=PrivacyMode.Secret, safe=''),
|
||
|
region=NotifySES.quote(self.aws_region_name, safe=''),
|
||
|
targets='' if not has_targets else '/'.join(
|
||
|
[NotifySES.quote('{}{}'.format(
|
||
|
'' if not e[0] else '{}:'.format(e[0]), e[1]),
|
||
|
safe='') for e in self.targets]),
|
||
|
params=NotifySES.urlencode(params),
|
||
|
)
|
||
|
|
||
|
@staticmethod
|
||
|
def parse_url(url):
|
||
|
"""
|
||
|
Parses the URL and returns enough arguments that can allow
|
||
|
us to re-instantiate this object.
|
||
|
|
||
|
"""
|
||
|
results = NotifyBase.parse_url(url, verify_host=False)
|
||
|
if not results:
|
||
|
# We're done early as we couldn't load the results
|
||
|
return results
|
||
|
|
||
|
# Get our entries; split_path() looks after unquoting content for us
|
||
|
# by default
|
||
|
entries = NotifySES.split_path(results['fullpath'])
|
||
|
|
||
|
# The AWS Access Key ID is stored in the first entry
|
||
|
access_key_id = entries.pop(0) if entries else None
|
||
|
|
||
|
# Our AWS Access Key Secret contains slashes in it which unfortunately
|
||
|
# means it is of variable length after the hostname. Since we require
|
||
|
# that the user provides the region code, we intentionally use this
|
||
|
# as our delimiter to detect where our Secret is.
|
||
|
secret_access_key = None
|
||
|
region_name = None
|
||
|
|
||
|
# We need to iterate over each entry in the fullpath and find our
|
||
|
# region. Once we get there we stop and build our secret from our
|
||
|
# accumulated data.
|
||
|
secret_access_key_parts = list()
|
||
|
|
||
|
# Section 1: Get Region and Access Secret
|
||
|
index = 0
|
||
|
for index, entry in enumerate(entries, start=1):
|
||
|
|
||
|
# Are we at the region yet?
|
||
|
result = IS_REGION.match(entry)
|
||
|
if result:
|
||
|
# Ensure region is nicely formatted
|
||
|
region_name = "{country}-{area}-{no}".format(
|
||
|
country=result.group('country').lower(),
|
||
|
area=result.group('area').lower(),
|
||
|
no=result.group('no'),
|
||
|
)
|
||
|
|
||
|
# We're done with Section 1 of our url (the credentials)
|
||
|
break
|
||
|
|
||
|
elif is_email(entry):
|
||
|
# We're done with Section 1 of our url (the credentials)
|
||
|
index -= 1
|
||
|
break
|
||
|
|
||
|
# Store our secret parts
|
||
|
secret_access_key_parts.append(entry)
|
||
|
|
||
|
# Prepare our Secret Access Key
|
||
|
secret_access_key = '/'.join(secret_access_key_parts) \
|
||
|
if secret_access_key_parts else None
|
||
|
|
||
|
# Section 2: Get our Recipients (basically all remaining entries)
|
||
|
results['targets'] = entries[index:]
|
||
|
|
||
|
if 'name' in results['qsd'] and len(results['qsd']['name']):
|
||
|
# Extract from name to associate with from address
|
||
|
results['from_name'] = \
|
||
|
NotifySES.unquote(results['qsd']['name'])
|
||
|
|
||
|
# Handle 'to' email address
|
||
|
if 'to' in results['qsd'] and len(results['qsd']['to']):
|
||
|
results['targets'].append(results['qsd']['to'])
|
||
|
|
||
|
# Handle Carbon Copy Addresses
|
||
|
if 'cc' in results['qsd'] and len(results['qsd']['cc']):
|
||
|
results['cc'] = NotifySES.parse_list(results['qsd']['cc'])
|
||
|
|
||
|
# Handle Blind Carbon Copy Addresses
|
||
|
if 'bcc' in results['qsd'] and len(results['qsd']['bcc']):
|
||
|
results['bcc'] = NotifySES.parse_list(results['qsd']['bcc'])
|
||
|
|
||
|
# Handle From Address handling
|
||
|
if 'from' in results['qsd'] and len(results['qsd']['from']):
|
||
|
results['from_addr'] = \
|
||
|
NotifySES.unquote(results['qsd']['from'])
|
||
|
|
||
|
# Handle Reply To Address
|
||
|
if 'reply' in results['qsd'] and len(results['qsd']['reply']):
|
||
|
results['reply_to'] = \
|
||
|
NotifySES.unquote(results['qsd']['reply'])
|
||
|
|
||
|
# Handle secret_access_key over-ride
|
||
|
if 'secret' in results['qsd'] and len(results['qsd']['secret']):
|
||
|
results['secret_access_key'] = \
|
||
|
NotifySES.unquote(results['qsd']['secret'])
|
||
|
else:
|
||
|
results['secret_access_key'] = secret_access_key
|
||
|
|
||
|
# Handle access key id over-ride
|
||
|
if 'access' in results['qsd'] and len(results['qsd']['access']):
|
||
|
results['access_key_id'] = \
|
||
|
NotifySES.unquote(results['qsd']['access'])
|
||
|
else:
|
||
|
results['access_key_id'] = access_key_id
|
||
|
|
||
|
# Handle region name id over-ride
|
||
|
if 'region' in results['qsd'] and len(results['qsd']['region']):
|
||
|
results['region_name'] = \
|
||
|
NotifySES.unquote(results['qsd']['region'])
|
||
|
else:
|
||
|
results['region_name'] = region_name
|
||
|
|
||
|
# Return our result set
|
||
|
return results
|