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README.md
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# aws-production
# Cherokee Nation AWS CDK Production Demo
This CDK application creates a production-like AWS environment using Native American tribes and deities naming convention. All resources are designed to stay within AWS Free Tier limits.
## 🏛️ Naming Convention
This project uses Native American tribes and deities for resource naming:
### Network Resources (Cherokee Nation Theme)
- **Cherokee VPC** - Main virtual private cloud
- **Sequoyah Public Subnet** - Named after Cherokee scholar who created Cherokee syllabary
### Security (Apache Nation Theme)
- **Apache Security Group** - Named after the Apache people, known for their warrior culture
### Compute (Sioux Nation Theme)
- **Sitting Bull Instance** - Named after famous Lakota leader and holy man
- **Crazy Horse Instance** - Named after famous Oglala Lakota war leader
### Storage (Cherokee Theme)
- **Cherokee Storage Bucket** - S3 bucket for logging and demos
### IAM (Native American Deities Theme)
- **Kokopelli Group** - ReadOnly access group (Hopi fertility deity)
- **Quetzalcoatl User** - IAM user (Aztec feathered serpent deity)
- **Wendigo User** - IAM user (Algonquian cannibalistic spirit)
- **Thunderbird User** - IAM user (Powerful supernatural bird)
- **Coyote User** - IAM user (Trickster deity in Western tribes)
- **Raven User** - IAM user (Creator deity in Pacific Northwest)
## 🏗️ Architecture
```
Cherokee VPC (10.0.0.0/16)
├── Sequoyah Public Subnet
├── Sitting Bull EC2 (NGINX Web Server)
├── Crazy Horse EC2 (NGINX Web Server)
└── Apache Security Group (SSH:22, HTTP:80)
├── Cherokee Storage S3 Bucket
└── Kokopelli IAM Group (5 deity users with ReadOnly access)
```
## 📋 Resources Created
### Networking
- **1 VPC** with DNS resolution enabled
- **1 Public Subnet** with auto-assign public IP
- **1 Internet Gateway** (automatically created)
- **Route Tables** (automatically configured)
### Compute
- **2 EC2 t2.micro instances** (Free Tier eligible)
- **NGINX** automatically installed and configured
- **Custom welcome pages** with server identification
### Security
- **1 Security Group** allowing SSH (22) and HTTP (80) from anywhere
- **EC2 Key Pair** for SSH access (you must create this)
### Storage
- **1 S3 Bucket** with versioning and encryption enabled
- **Block all public access** for security
### IAM
- **1 IAM Group** with AWS ReadOnlyAccess policy
- **5 IAM Users** with console access and auto-generated passwords
- **Least privilege** access with password change permissions
## 🚀 Deployment Instructions
### Prerequisites
Ensure you have:
- AWS CLI configured with credentials
- CDK bootstrapped in your region
- EC2 Key Pair created (`my-cdk-keypair`)
### Deploy Steps
1. **Install dependencies:**
```bash
pip install -r requirements.txt
```
2. **Synthesize the stack:**
```bash
cdk synth
```
3. **Deploy the stack:**
```bash
cdk deploy ManitouProductionStack
```
4. **View outputs:**
The deployment will show:
- Public IP addresses of both web servers
- IAM usernames
- S3 bucket name
- Web URLs for easy access
### Access Your Resources
**Web Servers:**
- Visit the output URLs to see NGINX welcome pages
- Each server has a custom page identifying itself
**SSH Access:**
```bash
ssh -i my-cdk-keypair.pem ec2-user@<PUBLIC_IP>
```
**AWS Console:**
- Use the created IAM user credentials to log into AWS Console
- Users have ReadOnly access across AWS services
## 🏷️ Resource Tags
All resources are tagged with:
- **Environment**: Production
- **Project**: CDK-Demo
- **Owner**: DevOps-Team
- **CostCenter**: Engineering
## 💰 Cost Optimization
This setup is designed for AWS Free Tier:
- **EC2**: t2.micro instances (750 hours/month free)
- **S3**: 5GB storage free
- **VPC**: No additional charges for basic networking
- **IAM**: No charges for users and groups
## 🧹 Cleanup
To avoid any potential charges:
```bash
cdk destroy ManitouProductionStack
```
This will remove all resources except:
- EC2 Key Pair (you created this manually)
- Any data you uploaded to S3 (if removal policy changed)
## 🔒 Security Notes
- **IAM Users**: Have ReadOnly access only
- **EC2 Access**: SSH key required for instance access
- **S3 Bucket**: Blocks all public access
- **Security Groups**: Allow SSH and HTTP from anywhere (adjust for production use)
## 📝 Customization
To modify the setup:
1. Edit `production_stack.py`
2. Run `cdk diff` to see changes
3. Run `cdk deploy` to apply changes
## 🙏 Cultural Respect
This naming convention honors Native American tribes and spiritual traditions. The names are used with respect for their cultural significance and historical importance.

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app.py Normal file
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#!/usr/bin/env python3
"""
AWS CDK Production-like Environment Demo
Using Native American tribes and deities naming convention
"""
import aws_cdk as cdk
from production_stack import ProductionStack
app = cdk.App()
# Create the production stack with Native American naming
ProductionStack(
app,
"ManitouProductionStack", # Manitou - Great Spirit in Algonquian traditions
env=cdk.Environment(
account=app.node.try_get_context("account"),
region="us-east-2"
),
description="Production-like AWS environment with Cherokee naming convention"
)
app.synth()

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<#
.Synopsis
Activate a Python virtual environment for the current PowerShell session.
.Description
Pushes the python executable for a virtual environment to the front of the
$Env:PATH environment variable and sets the prompt to signify that you are
in a Python virtual environment. Makes use of the command line switches as
well as the `pyvenv.cfg` file values present in the virtual environment.
.Parameter VenvDir
Path to the directory that contains the virtual environment to activate. The
default value for this is the parent of the directory that the Activate.ps1
script is located within.
.Parameter Prompt
The prompt prefix to display when this virtual environment is activated. By
default, this prompt is the name of the virtual environment folder (VenvDir)
surrounded by parentheses and followed by a single space (ie. '(.venv) ').
.Example
Activate.ps1
Activates the Python virtual environment that contains the Activate.ps1 script.
.Example
Activate.ps1 -Verbose
Activates the Python virtual environment that contains the Activate.ps1 script,
and shows extra information about the activation as it executes.
.Example
Activate.ps1 -VenvDir C:\Users\MyUser\Common\.venv
Activates the Python virtual environment located in the specified location.
.Example
Activate.ps1 -Prompt "MyPython"
Activates the Python virtual environment that contains the Activate.ps1 script,
and prefixes the current prompt with the specified string (surrounded in
parentheses) while the virtual environment is active.
.Notes
On Windows, it may be required to enable this Activate.ps1 script by setting the
execution policy for the user. You can do this by issuing the following PowerShell
command:
PS C:\> Set-ExecutionPolicy -ExecutionPolicy RemoteSigned -Scope CurrentUser
For more information on Execution Policies:
https://go.microsoft.com/fwlink/?LinkID=135170
#>
Param(
[Parameter(Mandatory = $false)]
[String]
$VenvDir,
[Parameter(Mandatory = $false)]
[String]
$Prompt
)
<# Function declarations --------------------------------------------------- #>
<#
.Synopsis
Remove all shell session elements added by the Activate script, including the
addition of the virtual environment's Python executable from the beginning of
the PATH variable.
.Parameter NonDestructive
If present, do not remove this function from the global namespace for the
session.
#>
function global:deactivate ([switch]$NonDestructive) {
# Revert to original values
# The prior prompt:
if (Test-Path -Path Function:_OLD_VIRTUAL_PROMPT) {
Copy-Item -Path Function:_OLD_VIRTUAL_PROMPT -Destination Function:prompt
Remove-Item -Path Function:_OLD_VIRTUAL_PROMPT
}
# The prior PYTHONHOME:
if (Test-Path -Path Env:_OLD_VIRTUAL_PYTHONHOME) {
Copy-Item -Path Env:_OLD_VIRTUAL_PYTHONHOME -Destination Env:PYTHONHOME
Remove-Item -Path Env:_OLD_VIRTUAL_PYTHONHOME
}
# The prior PATH:
if (Test-Path -Path Env:_OLD_VIRTUAL_PATH) {
Copy-Item -Path Env:_OLD_VIRTUAL_PATH -Destination Env:PATH
Remove-Item -Path Env:_OLD_VIRTUAL_PATH
}
# Just remove the VIRTUAL_ENV altogether:
if (Test-Path -Path Env:VIRTUAL_ENV) {
Remove-Item -Path env:VIRTUAL_ENV
}
# Just remove VIRTUAL_ENV_PROMPT altogether.
if (Test-Path -Path Env:VIRTUAL_ENV_PROMPT) {
Remove-Item -Path env:VIRTUAL_ENV_PROMPT
}
# Just remove the _PYTHON_VENV_PROMPT_PREFIX altogether:
if (Get-Variable -Name "_PYTHON_VENV_PROMPT_PREFIX" -ErrorAction SilentlyContinue) {
Remove-Variable -Name _PYTHON_VENV_PROMPT_PREFIX -Scope Global -Force
}
# Leave deactivate function in the global namespace if requested:
if (-not $NonDestructive) {
Remove-Item -Path function:deactivate
}
}
<#
.Description
Get-PyVenvConfig parses the values from the pyvenv.cfg file located in the
given folder, and returns them in a map.
For each line in the pyvenv.cfg file, if that line can be parsed into exactly
two strings separated by `=` (with any amount of whitespace surrounding the =)
then it is considered a `key = value` line. The left hand string is the key,
the right hand is the value.
If the value starts with a `'` or a `"` then the first and last character is
stripped from the value before being captured.
.Parameter ConfigDir
Path to the directory that contains the `pyvenv.cfg` file.
#>
function Get-PyVenvConfig(
[String]
$ConfigDir
) {
Write-Verbose "Given ConfigDir=$ConfigDir, obtain values in pyvenv.cfg"
# Ensure the file exists, and issue a warning if it doesn't (but still allow the function to continue).
$pyvenvConfigPath = Join-Path -Resolve -Path $ConfigDir -ChildPath 'pyvenv.cfg' -ErrorAction Continue
# An empty map will be returned if no config file is found.
$pyvenvConfig = @{ }
if ($pyvenvConfigPath) {
Write-Verbose "File exists, parse `key = value` lines"
$pyvenvConfigContent = Get-Content -Path $pyvenvConfigPath
$pyvenvConfigContent | ForEach-Object {
$keyval = $PSItem -split "\s*=\s*", 2
if ($keyval[0] -and $keyval[1]) {
$val = $keyval[1]
# Remove extraneous quotations around a string value.
if ("'""".Contains($val.Substring(0, 1))) {
$val = $val.Substring(1, $val.Length - 2)
}
$pyvenvConfig[$keyval[0]] = $val
Write-Verbose "Adding Key: '$($keyval[0])'='$val'"
}
}
}
return $pyvenvConfig
}
<# Begin Activate script --------------------------------------------------- #>
# Determine the containing directory of this script
$VenvExecPath = Split-Path -Parent $MyInvocation.MyCommand.Definition
$VenvExecDir = Get-Item -Path $VenvExecPath
Write-Verbose "Activation script is located in path: '$VenvExecPath'"
Write-Verbose "VenvExecDir Fullname: '$($VenvExecDir.FullName)"
Write-Verbose "VenvExecDir Name: '$($VenvExecDir.Name)"
# Set values required in priority: CmdLine, ConfigFile, Default
# First, get the location of the virtual environment, it might not be
# VenvExecDir if specified on the command line.
if ($VenvDir) {
Write-Verbose "VenvDir given as parameter, using '$VenvDir' to determine values"
}
else {
Write-Verbose "VenvDir not given as a parameter, using parent directory name as VenvDir."
$VenvDir = $VenvExecDir.Parent.FullName.TrimEnd("\\/")
Write-Verbose "VenvDir=$VenvDir"
}
# Next, read the `pyvenv.cfg` file to determine any required value such
# as `prompt`.
$pyvenvCfg = Get-PyVenvConfig -ConfigDir $VenvDir
# Next, set the prompt from the command line, or the config file, or
# just use the name of the virtual environment folder.
if ($Prompt) {
Write-Verbose "Prompt specified as argument, using '$Prompt'"
}
else {
Write-Verbose "Prompt not specified as argument to script, checking pyvenv.cfg value"
if ($pyvenvCfg -and $pyvenvCfg['prompt']) {
Write-Verbose " Setting based on value in pyvenv.cfg='$($pyvenvCfg['prompt'])'"
$Prompt = $pyvenvCfg['prompt'];
}
else {
Write-Verbose " Setting prompt based on parent's directory's name. (Is the directory name passed to venv module when creating the virtual environment)"
Write-Verbose " Got leaf-name of $VenvDir='$(Split-Path -Path $venvDir -Leaf)'"
$Prompt = Split-Path -Path $venvDir -Leaf
}
}
Write-Verbose "Prompt = '$Prompt'"
Write-Verbose "VenvDir='$VenvDir'"
# Deactivate any currently active virtual environment, but leave the
# deactivate function in place.
deactivate -nondestructive
# Now set the environment variable VIRTUAL_ENV, used by many tools to determine
# that there is an activated venv.
$env:VIRTUAL_ENV = $VenvDir
if (-not $Env:VIRTUAL_ENV_DISABLE_PROMPT) {
Write-Verbose "Setting prompt to '$Prompt'"
# Set the prompt to include the env name
# Make sure _OLD_VIRTUAL_PROMPT is global
function global:_OLD_VIRTUAL_PROMPT { "" }
Copy-Item -Path function:prompt -Destination function:_OLD_VIRTUAL_PROMPT
New-Variable -Name _PYTHON_VENV_PROMPT_PREFIX -Description "Python virtual environment prompt prefix" -Scope Global -Option ReadOnly -Visibility Public -Value $Prompt
function global:prompt {
Write-Host -NoNewline -ForegroundColor Green "($_PYTHON_VENV_PROMPT_PREFIX) "
_OLD_VIRTUAL_PROMPT
}
$env:VIRTUAL_ENV_PROMPT = $Prompt
}
# Clear PYTHONHOME
if (Test-Path -Path Env:PYTHONHOME) {
Copy-Item -Path Env:PYTHONHOME -Destination Env:_OLD_VIRTUAL_PYTHONHOME
Remove-Item -Path Env:PYTHONHOME
}
# Add the venv to the PATH
Copy-Item -Path Env:PATH -Destination Env:_OLD_VIRTUAL_PATH
$Env:PATH = "$VenvExecDir$([System.IO.Path]::PathSeparator)$Env:PATH"

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# This file must be used with "source bin/activate" *from bash*
# You cannot run it directly
deactivate () {
# reset old environment variables
if [ -n "${_OLD_VIRTUAL_PATH:-}" ] ; then
PATH="${_OLD_VIRTUAL_PATH:-}"
export PATH
unset _OLD_VIRTUAL_PATH
fi
if [ -n "${_OLD_VIRTUAL_PYTHONHOME:-}" ] ; then
PYTHONHOME="${_OLD_VIRTUAL_PYTHONHOME:-}"
export PYTHONHOME
unset _OLD_VIRTUAL_PYTHONHOME
fi
# Call hash to forget past commands. Without forgetting
# past commands the $PATH changes we made may not be respected
hash -r 2> /dev/null
if [ -n "${_OLD_VIRTUAL_PS1:-}" ] ; then
PS1="${_OLD_VIRTUAL_PS1:-}"
export PS1
unset _OLD_VIRTUAL_PS1
fi
unset VIRTUAL_ENV
unset VIRTUAL_ENV_PROMPT
if [ ! "${1:-}" = "nondestructive" ] ; then
# Self destruct!
unset -f deactivate
fi
}
# unset irrelevant variables
deactivate nondestructive
# on Windows, a path can contain colons and backslashes and has to be converted:
if [ "${OSTYPE:-}" = "cygwin" ] || [ "${OSTYPE:-}" = "msys" ] ; then
# transform D:\path\to\venv to /d/path/to/venv on MSYS
# and to /cygdrive/d/path/to/venv on Cygwin
export VIRTUAL_ENV=$(cygpath /home/jacques/aws-production/cdk-env)
else
# use the path as-is
export VIRTUAL_ENV=/home/jacques/aws-production/cdk-env
fi
_OLD_VIRTUAL_PATH="$PATH"
PATH="$VIRTUAL_ENV/"bin":$PATH"
export PATH
# unset PYTHONHOME if set
# this will fail if PYTHONHOME is set to the empty string (which is bad anyway)
# could use `if (set -u; : $PYTHONHOME) ;` in bash
if [ -n "${PYTHONHOME:-}" ] ; then
_OLD_VIRTUAL_PYTHONHOME="${PYTHONHOME:-}"
unset PYTHONHOME
fi
if [ -z "${VIRTUAL_ENV_DISABLE_PROMPT:-}" ] ; then
_OLD_VIRTUAL_PS1="${PS1:-}"
PS1='(cdk-env) '"${PS1:-}"
export PS1
VIRTUAL_ENV_PROMPT='(cdk-env) '
export VIRTUAL_ENV_PROMPT
fi
# Call hash to forget past commands. Without forgetting
# past commands the $PATH changes we made may not be respected
hash -r 2> /dev/null

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# This file must be used with "source bin/activate.csh" *from csh*.
# You cannot run it directly.
# Created by Davide Di Blasi <davidedb@gmail.com>.
# Ported to Python 3.3 venv by Andrew Svetlov <andrew.svetlov@gmail.com>
alias deactivate 'test $?_OLD_VIRTUAL_PATH != 0 && setenv PATH "$_OLD_VIRTUAL_PATH" && unset _OLD_VIRTUAL_PATH; rehash; test $?_OLD_VIRTUAL_PROMPT != 0 && set prompt="$_OLD_VIRTUAL_PROMPT" && unset _OLD_VIRTUAL_PROMPT; unsetenv VIRTUAL_ENV; unsetenv VIRTUAL_ENV_PROMPT; test "\!:*" != "nondestructive" && unalias deactivate'
# Unset irrelevant variables.
deactivate nondestructive
setenv VIRTUAL_ENV /home/jacques/aws-production/cdk-env
set _OLD_VIRTUAL_PATH="$PATH"
setenv PATH "$VIRTUAL_ENV/"bin":$PATH"
set _OLD_VIRTUAL_PROMPT="$prompt"
if (! "$?VIRTUAL_ENV_DISABLE_PROMPT") then
set prompt = '(cdk-env) '"$prompt"
setenv VIRTUAL_ENV_PROMPT '(cdk-env) '
endif
alias pydoc python -m pydoc
rehash

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# This file must be used with "source <venv>/bin/activate.fish" *from fish*
# (https://fishshell.com/). You cannot run it directly.
function deactivate -d "Exit virtual environment and return to normal shell environment"
# reset old environment variables
if test -n "$_OLD_VIRTUAL_PATH"
set -gx PATH $_OLD_VIRTUAL_PATH
set -e _OLD_VIRTUAL_PATH
end
if test -n "$_OLD_VIRTUAL_PYTHONHOME"
set -gx PYTHONHOME $_OLD_VIRTUAL_PYTHONHOME
set -e _OLD_VIRTUAL_PYTHONHOME
end
if test -n "$_OLD_FISH_PROMPT_OVERRIDE"
set -e _OLD_FISH_PROMPT_OVERRIDE
# prevents error when using nested fish instances (Issue #93858)
if functions -q _old_fish_prompt
functions -e fish_prompt
functions -c _old_fish_prompt fish_prompt
functions -e _old_fish_prompt
end
end
set -e VIRTUAL_ENV
set -e VIRTUAL_ENV_PROMPT
if test "$argv[1]" != "nondestructive"
# Self-destruct!
functions -e deactivate
end
end
# Unset irrelevant variables.
deactivate nondestructive
set -gx VIRTUAL_ENV /home/jacques/aws-production/cdk-env
set -gx _OLD_VIRTUAL_PATH $PATH
set -gx PATH "$VIRTUAL_ENV/"bin $PATH
# Unset PYTHONHOME if set.
if set -q PYTHONHOME
set -gx _OLD_VIRTUAL_PYTHONHOME $PYTHONHOME
set -e PYTHONHOME
end
if test -z "$VIRTUAL_ENV_DISABLE_PROMPT"
# fish uses a function instead of an env var to generate the prompt.
# Save the current fish_prompt function as the function _old_fish_prompt.
functions -c fish_prompt _old_fish_prompt
# With the original prompt function renamed, we can override with our own.
function fish_prompt
# Save the return status of the last command.
set -l old_status $status
# Output the venv prompt; color taken from the blue of the Python logo.
printf "%s%s%s" (set_color 4B8BBE) '(cdk-env) ' (set_color normal)
# Restore the return status of the previous command.
echo "exit $old_status" | .
# Output the original/"old" prompt.
_old_fish_prompt
end
set -gx _OLD_FISH_PROMPT_OVERRIDE "$VIRTUAL_ENV"
set -gx VIRTUAL_ENV_PROMPT '(cdk-env) '
end

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#!/home/jacques/aws-production/cdk-env/bin/python3
import sys
import json
import argparse
from pprint import pformat
import jmespath
from jmespath import exceptions
def main():
parser = argparse.ArgumentParser()
parser.add_argument('expression')
parser.add_argument('-f', '--filename',
help=('The filename containing the input data. '
'If a filename is not given then data is '
'read from stdin.'))
parser.add_argument('--ast', action='store_true',
help=('Pretty print the AST, do not search the data.'))
args = parser.parse_args()
expression = args.expression
if args.ast:
# Only print the AST
expression = jmespath.compile(args.expression)
sys.stdout.write(pformat(expression.parsed))
sys.stdout.write('\n')
return 0
if args.filename:
with open(args.filename, 'r') as f:
data = json.load(f)
else:
data = sys.stdin.read()
data = json.loads(data)
try:
sys.stdout.write(json.dumps(
jmespath.search(expression, data), indent=4, ensure_ascii=False))
sys.stdout.write('\n')
except exceptions.ArityError as e:
sys.stderr.write("invalid-arity: %s\n" % e)
return 1
except exceptions.JMESPathTypeError as e:
sys.stderr.write("invalid-type: %s\n" % e)
return 1
except exceptions.UnknownFunctionError as e:
sys.stderr.write("unknown-function: %s\n" % e)
return 1
except exceptions.ParseError as e:
sys.stderr.write("syntax-error: %s\n" % e)
return 1
if __name__ == '__main__':
sys.exit(main())

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#!/home/jacques/aws-production/cdk-env/bin/python3
# -*- coding: utf-8 -*-
import re
import sys
from pip._internal.cli.main import main
if __name__ == '__main__':
sys.argv[0] = re.sub(r'(-script\.pyw|\.exe)?$', '', sys.argv[0])
sys.exit(main())

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#!/home/jacques/aws-production/cdk-env/bin/python3
# -*- coding: utf-8 -*-
import re
import sys
from pip._internal.cli.main import main
if __name__ == '__main__':
sys.argv[0] = re.sub(r'(-script\.pyw|\.exe)?$', '', sys.argv[0])
sys.exit(main())

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#!/home/jacques/aws-production/cdk-env/bin/python3
# -*- coding: utf-8 -*-
import re
import sys
from pip._internal.cli.main import main
if __name__ == '__main__':
sys.argv[0] = re.sub(r'(-script\.pyw|\.exe)?$', '', sys.argv[0])
sys.exit(main())

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python3

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/usr/bin/python3

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python3

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# SPDX-License-Identifier: MIT
"""
Classes Without Boilerplate
"""
from functools import partial
from typing import Callable, Literal, Protocol
from . import converters, exceptions, filters, setters, validators
from ._cmp import cmp_using
from ._config import get_run_validators, set_run_validators
from ._funcs import asdict, assoc, astuple, has, resolve_types
from ._make import (
NOTHING,
Attribute,
Converter,
Factory,
_Nothing,
attrib,
attrs,
evolve,
fields,
fields_dict,
make_class,
validate,
)
from ._next_gen import define, field, frozen, mutable
from ._version_info import VersionInfo
s = attributes = attrs
ib = attr = attrib
dataclass = partial(attrs, auto_attribs=True) # happy Easter ;)
class AttrsInstance(Protocol):
pass
NothingType = Literal[_Nothing.NOTHING]
__all__ = [
"NOTHING",
"Attribute",
"AttrsInstance",
"Converter",
"Factory",
"NothingType",
"asdict",
"assoc",
"astuple",
"attr",
"attrib",
"attributes",
"attrs",
"cmp_using",
"converters",
"define",
"evolve",
"exceptions",
"field",
"fields",
"fields_dict",
"filters",
"frozen",
"get_run_validators",
"has",
"ib",
"make_class",
"mutable",
"resolve_types",
"s",
"set_run_validators",
"setters",
"validate",
"validators",
]
def _make_getattr(mod_name: str) -> Callable:
"""
Create a metadata proxy for packaging information that uses *mod_name* in
its warnings and errors.
"""
def __getattr__(name: str) -> str:
if name not in ("__version__", "__version_info__"):
msg = f"module {mod_name} has no attribute {name}"
raise AttributeError(msg)
from importlib.metadata import metadata
meta = metadata("attrs")
if name == "__version_info__":
return VersionInfo._from_version_string(meta["version"])
return meta["version"]
return __getattr__
__getattr__ = _make_getattr(__name__)

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import enum
import sys
from typing import (
Any,
Callable,
Generic,
Literal,
Mapping,
Protocol,
Sequence,
TypeVar,
overload,
)
# `import X as X` is required to make these public
from . import converters as converters
from . import exceptions as exceptions
from . import filters as filters
from . import setters as setters
from . import validators as validators
from ._cmp import cmp_using as cmp_using
from ._typing_compat import AttrsInstance_
from ._version_info import VersionInfo
from attrs import (
define as define,
field as field,
mutable as mutable,
frozen as frozen,
_EqOrderType,
_ValidatorType,
_ConverterType,
_ReprArgType,
_OnSetAttrType,
_OnSetAttrArgType,
_FieldTransformer,
_ValidatorArgType,
)
if sys.version_info >= (3, 10):
from typing import TypeGuard, TypeAlias
else:
from typing_extensions import TypeGuard, TypeAlias
if sys.version_info >= (3, 11):
from typing import dataclass_transform
else:
from typing_extensions import dataclass_transform
__version__: str
__version_info__: VersionInfo
__title__: str
__description__: str
__url__: str
__uri__: str
__author__: str
__email__: str
__license__: str
__copyright__: str
_T = TypeVar("_T")
_C = TypeVar("_C", bound=type)
_FilterType = Callable[["Attribute[_T]", _T], bool]
# We subclass this here to keep the protocol's qualified name clean.
class AttrsInstance(AttrsInstance_, Protocol):
pass
_A = TypeVar("_A", bound=type[AttrsInstance])
class _Nothing(enum.Enum):
NOTHING = enum.auto()
NOTHING = _Nothing.NOTHING
NothingType: TypeAlias = Literal[_Nothing.NOTHING]
# NOTE: Factory lies about its return type to make this possible:
# `x: List[int] # = Factory(list)`
# Work around mypy issue #4554 in the common case by using an overload.
@overload
def Factory(factory: Callable[[], _T]) -> _T: ...
@overload
def Factory(
factory: Callable[[Any], _T],
takes_self: Literal[True],
) -> _T: ...
@overload
def Factory(
factory: Callable[[], _T],
takes_self: Literal[False],
) -> _T: ...
In = TypeVar("In")
Out = TypeVar("Out")
class Converter(Generic[In, Out]):
@overload
def __init__(self, converter: Callable[[In], Out]) -> None: ...
@overload
def __init__(
self,
converter: Callable[[In, AttrsInstance, Attribute], Out],
*,
takes_self: Literal[True],
takes_field: Literal[True],
) -> None: ...
@overload
def __init__(
self,
converter: Callable[[In, Attribute], Out],
*,
takes_field: Literal[True],
) -> None: ...
@overload
def __init__(
self,
converter: Callable[[In, AttrsInstance], Out],
*,
takes_self: Literal[True],
) -> None: ...
class Attribute(Generic[_T]):
name: str
default: _T | None
validator: _ValidatorType[_T] | None
repr: _ReprArgType
cmp: _EqOrderType
eq: _EqOrderType
order: _EqOrderType
hash: bool | None
init: bool
converter: Converter | None
metadata: dict[Any, Any]
type: type[_T] | None
kw_only: bool
on_setattr: _OnSetAttrType
alias: str | None
def evolve(self, **changes: Any) -> "Attribute[Any]": ...
# NOTE: We had several choices for the annotation to use for type arg:
# 1) Type[_T]
# - Pros: Handles simple cases correctly
# - Cons: Might produce less informative errors in the case of conflicting
# TypeVars e.g. `attr.ib(default='bad', type=int)`
# 2) Callable[..., _T]
# - Pros: Better error messages than #1 for conflicting TypeVars
# - Cons: Terrible error messages for validator checks.
# e.g. attr.ib(type=int, validator=validate_str)
# -> error: Cannot infer function type argument
# 3) type (and do all of the work in the mypy plugin)
# - Pros: Simple here, and we could customize the plugin with our own errors.
# - Cons: Would need to write mypy plugin code to handle all the cases.
# We chose option #1.
# `attr` lies about its return type to make the following possible:
# attr() -> Any
# attr(8) -> int
# attr(validator=<some callable>) -> Whatever the callable expects.
# This makes this type of assignments possible:
# x: int = attr(8)
#
# This form catches explicit None or no default but with no other arguments
# returns Any.
@overload
def attrib(
default: None = ...,
validator: None = ...,
repr: _ReprArgType = ...,
cmp: _EqOrderType | None = ...,
hash: bool | None = ...,
init: bool = ...,
metadata: Mapping[Any, Any] | None = ...,
type: None = ...,
converter: None = ...,
factory: None = ...,
kw_only: bool = ...,
eq: _EqOrderType | None = ...,
order: _EqOrderType | None = ...,
on_setattr: _OnSetAttrArgType | None = ...,
alias: str | None = ...,
) -> Any: ...
# This form catches an explicit None or no default and infers the type from the
# other arguments.
@overload
def attrib(
default: None = ...,
validator: _ValidatorArgType[_T] | None = ...,
repr: _ReprArgType = ...,
cmp: _EqOrderType | None = ...,
hash: bool | None = ...,
init: bool = ...,
metadata: Mapping[Any, Any] | None = ...,
type: type[_T] | None = ...,
converter: _ConverterType
| list[_ConverterType]
| tuple[_ConverterType]
| None = ...,
factory: Callable[[], _T] | None = ...,
kw_only: bool = ...,
eq: _EqOrderType | None = ...,
order: _EqOrderType | None = ...,
on_setattr: _OnSetAttrArgType | None = ...,
alias: str | None = ...,
) -> _T: ...
# This form catches an explicit default argument.
@overload
def attrib(
default: _T,
validator: _ValidatorArgType[_T] | None = ...,
repr: _ReprArgType = ...,
cmp: _EqOrderType | None = ...,
hash: bool | None = ...,
init: bool = ...,
metadata: Mapping[Any, Any] | None = ...,
type: type[_T] | None = ...,
converter: _ConverterType
| list[_ConverterType]
| tuple[_ConverterType]
| None = ...,
factory: Callable[[], _T] | None = ...,
kw_only: bool = ...,
eq: _EqOrderType | None = ...,
order: _EqOrderType | None = ...,
on_setattr: _OnSetAttrArgType | None = ...,
alias: str | None = ...,
) -> _T: ...
# This form covers type=non-Type: e.g. forward references (str), Any
@overload
def attrib(
default: _T | None = ...,
validator: _ValidatorArgType[_T] | None = ...,
repr: _ReprArgType = ...,
cmp: _EqOrderType | None = ...,
hash: bool | None = ...,
init: bool = ...,
metadata: Mapping[Any, Any] | None = ...,
type: object = ...,
converter: _ConverterType
| list[_ConverterType]
| tuple[_ConverterType]
| None = ...,
factory: Callable[[], _T] | None = ...,
kw_only: bool = ...,
eq: _EqOrderType | None = ...,
order: _EqOrderType | None = ...,
on_setattr: _OnSetAttrArgType | None = ...,
alias: str | None = ...,
) -> Any: ...
@overload
@dataclass_transform(order_default=True, field_specifiers=(attrib, field))
def attrs(
maybe_cls: _C,
these: dict[str, Any] | None = ...,
repr_ns: str | None = ...,
repr: bool = ...,
cmp: _EqOrderType | None = ...,
hash: bool | None = ...,
init: bool = ...,
slots: bool = ...,
frozen: bool = ...,
weakref_slot: bool = ...,
str: bool = ...,
auto_attribs: bool = ...,
kw_only: bool = ...,
cache_hash: bool = ...,
auto_exc: bool = ...,
eq: _EqOrderType | None = ...,
order: _EqOrderType | None = ...,
auto_detect: bool = ...,
collect_by_mro: bool = ...,
getstate_setstate: bool | None = ...,
on_setattr: _OnSetAttrArgType | None = ...,
field_transformer: _FieldTransformer | None = ...,
match_args: bool = ...,
unsafe_hash: bool | None = ...,
) -> _C: ...
@overload
@dataclass_transform(order_default=True, field_specifiers=(attrib, field))
def attrs(
maybe_cls: None = ...,
these: dict[str, Any] | None = ...,
repr_ns: str | None = ...,
repr: bool = ...,
cmp: _EqOrderType | None = ...,
hash: bool | None = ...,
init: bool = ...,
slots: bool = ...,
frozen: bool = ...,
weakref_slot: bool = ...,
str: bool = ...,
auto_attribs: bool = ...,
kw_only: bool = ...,
cache_hash: bool = ...,
auto_exc: bool = ...,
eq: _EqOrderType | None = ...,
order: _EqOrderType | None = ...,
auto_detect: bool = ...,
collect_by_mro: bool = ...,
getstate_setstate: bool | None = ...,
on_setattr: _OnSetAttrArgType | None = ...,
field_transformer: _FieldTransformer | None = ...,
match_args: bool = ...,
unsafe_hash: bool | None = ...,
) -> Callable[[_C], _C]: ...
def fields(cls: type[AttrsInstance]) -> Any: ...
def fields_dict(cls: type[AttrsInstance]) -> dict[str, Attribute[Any]]: ...
def validate(inst: AttrsInstance) -> None: ...
def resolve_types(
cls: _A,
globalns: dict[str, Any] | None = ...,
localns: dict[str, Any] | None = ...,
attribs: list[Attribute[Any]] | None = ...,
include_extras: bool = ...,
) -> _A: ...
# TODO: add support for returning a proper attrs class from the mypy plugin
# we use Any instead of _CountingAttr so that e.g. `make_class('Foo',
# [attr.ib()])` is valid
def make_class(
name: str,
attrs: list[str] | tuple[str, ...] | dict[str, Any],
bases: tuple[type, ...] = ...,
class_body: dict[str, Any] | None = ...,
repr_ns: str | None = ...,
repr: bool = ...,
cmp: _EqOrderType | None = ...,
hash: bool | None = ...,
init: bool = ...,
slots: bool = ...,
frozen: bool = ...,
weakref_slot: bool = ...,
str: bool = ...,
auto_attribs: bool = ...,
kw_only: bool = ...,
cache_hash: bool = ...,
auto_exc: bool = ...,
eq: _EqOrderType | None = ...,
order: _EqOrderType | None = ...,
collect_by_mro: bool = ...,
on_setattr: _OnSetAttrArgType | None = ...,
field_transformer: _FieldTransformer | None = ...,
) -> type: ...
# _funcs --
# TODO: add support for returning TypedDict from the mypy plugin
# FIXME: asdict/astuple do not honor their factory args. Waiting on one of
# these:
# https://github.com/python/mypy/issues/4236
# https://github.com/python/typing/issues/253
# XXX: remember to fix attrs.asdict/astuple too!
def asdict(
inst: AttrsInstance,
recurse: bool = ...,
filter: _FilterType[Any] | None = ...,
dict_factory: type[Mapping[Any, Any]] = ...,
retain_collection_types: bool = ...,
value_serializer: Callable[[type, Attribute[Any], Any], Any] | None = ...,
tuple_keys: bool | None = ...,
) -> dict[str, Any]: ...
# TODO: add support for returning NamedTuple from the mypy plugin
def astuple(
inst: AttrsInstance,
recurse: bool = ...,
filter: _FilterType[Any] | None = ...,
tuple_factory: type[Sequence[Any]] = ...,
retain_collection_types: bool = ...,
) -> tuple[Any, ...]: ...
def has(cls: type) -> TypeGuard[type[AttrsInstance]]: ...
def assoc(inst: _T, **changes: Any) -> _T: ...
def evolve(inst: _T, **changes: Any) -> _T: ...
# _config --
def set_run_validators(run: bool) -> None: ...
def get_run_validators() -> bool: ...
# aliases --
s = attributes = attrs
ib = attr = attrib
dataclass = attrs # Technically, partial(attrs, auto_attribs=True) ;)

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@@ -0,0 +1,160 @@
# SPDX-License-Identifier: MIT
import functools
import types
from ._make import __ne__
_operation_names = {"eq": "==", "lt": "<", "le": "<=", "gt": ">", "ge": ">="}
def cmp_using(
eq=None,
lt=None,
le=None,
gt=None,
ge=None,
require_same_type=True,
class_name="Comparable",
):
"""
Create a class that can be passed into `attrs.field`'s ``eq``, ``order``,
and ``cmp`` arguments to customize field comparison.
The resulting class will have a full set of ordering methods if at least
one of ``{lt, le, gt, ge}`` and ``eq`` are provided.
Args:
eq (typing.Callable | None):
Callable used to evaluate equality of two objects.
lt (typing.Callable | None):
Callable used to evaluate whether one object is less than another
object.
le (typing.Callable | None):
Callable used to evaluate whether one object is less than or equal
to another object.
gt (typing.Callable | None):
Callable used to evaluate whether one object is greater than
another object.
ge (typing.Callable | None):
Callable used to evaluate whether one object is greater than or
equal to another object.
require_same_type (bool):
When `True`, equality and ordering methods will return
`NotImplemented` if objects are not of the same type.
class_name (str | None): Name of class. Defaults to "Comparable".
See `comparison` for more details.
.. versionadded:: 21.1.0
"""
body = {
"__slots__": ["value"],
"__init__": _make_init(),
"_requirements": [],
"_is_comparable_to": _is_comparable_to,
}
# Add operations.
num_order_functions = 0
has_eq_function = False
if eq is not None:
has_eq_function = True
body["__eq__"] = _make_operator("eq", eq)
body["__ne__"] = __ne__
if lt is not None:
num_order_functions += 1
body["__lt__"] = _make_operator("lt", lt)
if le is not None:
num_order_functions += 1
body["__le__"] = _make_operator("le", le)
if gt is not None:
num_order_functions += 1
body["__gt__"] = _make_operator("gt", gt)
if ge is not None:
num_order_functions += 1
body["__ge__"] = _make_operator("ge", ge)
type_ = types.new_class(
class_name, (object,), {}, lambda ns: ns.update(body)
)
# Add same type requirement.
if require_same_type:
type_._requirements.append(_check_same_type)
# Add total ordering if at least one operation was defined.
if 0 < num_order_functions < 4:
if not has_eq_function:
# functools.total_ordering requires __eq__ to be defined,
# so raise early error here to keep a nice stack.
msg = "eq must be define is order to complete ordering from lt, le, gt, ge."
raise ValueError(msg)
type_ = functools.total_ordering(type_)
return type_
def _make_init():
"""
Create __init__ method.
"""
def __init__(self, value):
"""
Initialize object with *value*.
"""
self.value = value
return __init__
def _make_operator(name, func):
"""
Create operator method.
"""
def method(self, other):
if not self._is_comparable_to(other):
return NotImplemented
result = func(self.value, other.value)
if result is NotImplemented:
return NotImplemented
return result
method.__name__ = f"__{name}__"
method.__doc__ = (
f"Return a {_operation_names[name]} b. Computed by attrs."
)
return method
def _is_comparable_to(self, other):
"""
Check whether `other` is comparable to `self`.
"""
return all(func(self, other) for func in self._requirements)
def _check_same_type(self, other):
"""
Return True if *self* and *other* are of the same type, False otherwise.
"""
return other.value.__class__ is self.value.__class__

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@@ -0,0 +1,13 @@
from typing import Any, Callable
_CompareWithType = Callable[[Any, Any], bool]
def cmp_using(
eq: _CompareWithType | None = ...,
lt: _CompareWithType | None = ...,
le: _CompareWithType | None = ...,
gt: _CompareWithType | None = ...,
ge: _CompareWithType | None = ...,
require_same_type: bool = ...,
class_name: str = ...,
) -> type: ...

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@@ -0,0 +1,94 @@
# SPDX-License-Identifier: MIT
import inspect
import platform
import sys
import threading
from collections.abc import Mapping, Sequence # noqa: F401
from typing import _GenericAlias
PYPY = platform.python_implementation() == "PyPy"
PY_3_9_PLUS = sys.version_info[:2] >= (3, 9)
PY_3_10_PLUS = sys.version_info[:2] >= (3, 10)
PY_3_11_PLUS = sys.version_info[:2] >= (3, 11)
PY_3_12_PLUS = sys.version_info[:2] >= (3, 12)
PY_3_13_PLUS = sys.version_info[:2] >= (3, 13)
PY_3_14_PLUS = sys.version_info[:2] >= (3, 14)
if PY_3_14_PLUS: # pragma: no cover
import annotationlib
_get_annotations = annotationlib.get_annotations
else:
def _get_annotations(cls):
"""
Get annotations for *cls*.
"""
return cls.__dict__.get("__annotations__", {})
class _AnnotationExtractor:
"""
Extract type annotations from a callable, returning None whenever there
is none.
"""
__slots__ = ["sig"]
def __init__(self, callable):
try:
self.sig = inspect.signature(callable)
except (ValueError, TypeError): # inspect failed
self.sig = None
def get_first_param_type(self):
"""
Return the type annotation of the first argument if it's not empty.
"""
if not self.sig:
return None
params = list(self.sig.parameters.values())
if params and params[0].annotation is not inspect.Parameter.empty:
return params[0].annotation
return None
def get_return_type(self):
"""
Return the return type if it's not empty.
"""
if (
self.sig
and self.sig.return_annotation is not inspect.Signature.empty
):
return self.sig.return_annotation
return None
# Thread-local global to track attrs instances which are already being repr'd.
# This is needed because there is no other (thread-safe) way to pass info
# about the instances that are already being repr'd through the call stack
# in order to ensure we don't perform infinite recursion.
#
# For instance, if an instance contains a dict which contains that instance,
# we need to know that we're already repr'ing the outside instance from within
# the dict's repr() call.
#
# This lives here rather than in _make.py so that the functions in _make.py
# don't have a direct reference to the thread-local in their globals dict.
# If they have such a reference, it breaks cloudpickle.
repr_context = threading.local()
def get_generic_base(cl):
"""If this is a generic class (A[str]), return the generic base for it."""
if cl.__class__ is _GenericAlias:
return cl.__origin__
return None

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@@ -0,0 +1,31 @@
# SPDX-License-Identifier: MIT
__all__ = ["get_run_validators", "set_run_validators"]
_run_validators = True
def set_run_validators(run):
"""
Set whether or not validators are run. By default, they are run.
.. deprecated:: 21.3.0 It will not be removed, but it also will not be
moved to new ``attrs`` namespace. Use `attrs.validators.set_disabled()`
instead.
"""
if not isinstance(run, bool):
msg = "'run' must be bool."
raise TypeError(msg)
global _run_validators
_run_validators = run
def get_run_validators():
"""
Return whether or not validators are run.
.. deprecated:: 21.3.0 It will not be removed, but it also will not be
moved to new ``attrs`` namespace. Use `attrs.validators.get_disabled()`
instead.
"""
return _run_validators

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@@ -0,0 +1,468 @@
# SPDX-License-Identifier: MIT
import copy
from ._compat import PY_3_9_PLUS, get_generic_base
from ._make import _OBJ_SETATTR, NOTHING, fields
from .exceptions import AttrsAttributeNotFoundError
def asdict(
inst,
recurse=True,
filter=None,
dict_factory=dict,
retain_collection_types=False,
value_serializer=None,
):
"""
Return the *attrs* attribute values of *inst* as a dict.
Optionally recurse into other *attrs*-decorated classes.
Args:
inst: Instance of an *attrs*-decorated class.
recurse (bool): Recurse into classes that are also *attrs*-decorated.
filter (~typing.Callable):
A callable whose return code determines whether an attribute or
element is included (`True`) or dropped (`False`). Is called with
the `attrs.Attribute` as the first argument and the value as the
second argument.
dict_factory (~typing.Callable):
A callable to produce dictionaries from. For example, to produce
ordered dictionaries instead of normal Python dictionaries, pass in
``collections.OrderedDict``.
retain_collection_types (bool):
Do not convert to `list` when encountering an attribute whose type
is `tuple` or `set`. Only meaningful if *recurse* is `True`.
value_serializer (typing.Callable | None):
A hook that is called for every attribute or dict key/value. It
receives the current instance, field and value and must return the
(updated) value. The hook is run *after* the optional *filter* has
been applied.
Returns:
Return type of *dict_factory*.
Raises:
attrs.exceptions.NotAnAttrsClassError:
If *cls* is not an *attrs* class.
.. versionadded:: 16.0.0 *dict_factory*
.. versionadded:: 16.1.0 *retain_collection_types*
.. versionadded:: 20.3.0 *value_serializer*
.. versionadded:: 21.3.0
If a dict has a collection for a key, it is serialized as a tuple.
"""
attrs = fields(inst.__class__)
rv = dict_factory()
for a in attrs:
v = getattr(inst, a.name)
if filter is not None and not filter(a, v):
continue
if value_serializer is not None:
v = value_serializer(inst, a, v)
if recurse is True:
if has(v.__class__):
rv[a.name] = asdict(
v,
recurse=True,
filter=filter,
dict_factory=dict_factory,
retain_collection_types=retain_collection_types,
value_serializer=value_serializer,
)
elif isinstance(v, (tuple, list, set, frozenset)):
cf = v.__class__ if retain_collection_types is True else list
items = [
_asdict_anything(
i,
is_key=False,
filter=filter,
dict_factory=dict_factory,
retain_collection_types=retain_collection_types,
value_serializer=value_serializer,
)
for i in v
]
try:
rv[a.name] = cf(items)
except TypeError:
if not issubclass(cf, tuple):
raise
# Workaround for TypeError: cf.__new__() missing 1 required
# positional argument (which appears, for a namedturle)
rv[a.name] = cf(*items)
elif isinstance(v, dict):
df = dict_factory
rv[a.name] = df(
(
_asdict_anything(
kk,
is_key=True,
filter=filter,
dict_factory=df,
retain_collection_types=retain_collection_types,
value_serializer=value_serializer,
),
_asdict_anything(
vv,
is_key=False,
filter=filter,
dict_factory=df,
retain_collection_types=retain_collection_types,
value_serializer=value_serializer,
),
)
for kk, vv in v.items()
)
else:
rv[a.name] = v
else:
rv[a.name] = v
return rv
def _asdict_anything(
val,
is_key,
filter,
dict_factory,
retain_collection_types,
value_serializer,
):
"""
``asdict`` only works on attrs instances, this works on anything.
"""
if getattr(val.__class__, "__attrs_attrs__", None) is not None:
# Attrs class.
rv = asdict(
val,
recurse=True,
filter=filter,
dict_factory=dict_factory,
retain_collection_types=retain_collection_types,
value_serializer=value_serializer,
)
elif isinstance(val, (tuple, list, set, frozenset)):
if retain_collection_types is True:
cf = val.__class__
elif is_key:
cf = tuple
else:
cf = list
rv = cf(
[
_asdict_anything(
i,
is_key=False,
filter=filter,
dict_factory=dict_factory,
retain_collection_types=retain_collection_types,
value_serializer=value_serializer,
)
for i in val
]
)
elif isinstance(val, dict):
df = dict_factory
rv = df(
(
_asdict_anything(
kk,
is_key=True,
filter=filter,
dict_factory=df,
retain_collection_types=retain_collection_types,
value_serializer=value_serializer,
),
_asdict_anything(
vv,
is_key=False,
filter=filter,
dict_factory=df,
retain_collection_types=retain_collection_types,
value_serializer=value_serializer,
),
)
for kk, vv in val.items()
)
else:
rv = val
if value_serializer is not None:
rv = value_serializer(None, None, rv)
return rv
def astuple(
inst,
recurse=True,
filter=None,
tuple_factory=tuple,
retain_collection_types=False,
):
"""
Return the *attrs* attribute values of *inst* as a tuple.
Optionally recurse into other *attrs*-decorated classes.
Args:
inst: Instance of an *attrs*-decorated class.
recurse (bool):
Recurse into classes that are also *attrs*-decorated.
filter (~typing.Callable):
A callable whose return code determines whether an attribute or
element is included (`True`) or dropped (`False`). Is called with
the `attrs.Attribute` as the first argument and the value as the
second argument.
tuple_factory (~typing.Callable):
A callable to produce tuples from. For example, to produce lists
instead of tuples.
retain_collection_types (bool):
Do not convert to `list` or `dict` when encountering an attribute
which type is `tuple`, `dict` or `set`. Only meaningful if
*recurse* is `True`.
Returns:
Return type of *tuple_factory*
Raises:
attrs.exceptions.NotAnAttrsClassError:
If *cls* is not an *attrs* class.
.. versionadded:: 16.2.0
"""
attrs = fields(inst.__class__)
rv = []
retain = retain_collection_types # Very long. :/
for a in attrs:
v = getattr(inst, a.name)
if filter is not None and not filter(a, v):
continue
if recurse is True:
if has(v.__class__):
rv.append(
astuple(
v,
recurse=True,
filter=filter,
tuple_factory=tuple_factory,
retain_collection_types=retain,
)
)
elif isinstance(v, (tuple, list, set, frozenset)):
cf = v.__class__ if retain is True else list
items = [
(
astuple(
j,
recurse=True,
filter=filter,
tuple_factory=tuple_factory,
retain_collection_types=retain,
)
if has(j.__class__)
else j
)
for j in v
]
try:
rv.append(cf(items))
except TypeError:
if not issubclass(cf, tuple):
raise
# Workaround for TypeError: cf.__new__() missing 1 required
# positional argument (which appears, for a namedturle)
rv.append(cf(*items))
elif isinstance(v, dict):
df = v.__class__ if retain is True else dict
rv.append(
df(
(
(
astuple(
kk,
tuple_factory=tuple_factory,
retain_collection_types=retain,
)
if has(kk.__class__)
else kk
),
(
astuple(
vv,
tuple_factory=tuple_factory,
retain_collection_types=retain,
)
if has(vv.__class__)
else vv
),
)
for kk, vv in v.items()
)
)
else:
rv.append(v)
else:
rv.append(v)
return rv if tuple_factory is list else tuple_factory(rv)
def has(cls):
"""
Check whether *cls* is a class with *attrs* attributes.
Args:
cls (type): Class to introspect.
Raises:
TypeError: If *cls* is not a class.
Returns:
bool:
"""
attrs = getattr(cls, "__attrs_attrs__", None)
if attrs is not None:
return True
# No attrs, maybe it's a specialized generic (A[str])?
generic_base = get_generic_base(cls)
if generic_base is not None:
generic_attrs = getattr(generic_base, "__attrs_attrs__", None)
if generic_attrs is not None:
# Stick it on here for speed next time.
cls.__attrs_attrs__ = generic_attrs
return generic_attrs is not None
return False
def assoc(inst, **changes):
"""
Copy *inst* and apply *changes*.
This is different from `evolve` that applies the changes to the arguments
that create the new instance.
`evolve`'s behavior is preferable, but there are `edge cases`_ where it
doesn't work. Therefore `assoc` is deprecated, but will not be removed.
.. _`edge cases`: https://github.com/python-attrs/attrs/issues/251
Args:
inst: Instance of a class with *attrs* attributes.
changes: Keyword changes in the new copy.
Returns:
A copy of inst with *changes* incorporated.
Raises:
attrs.exceptions.AttrsAttributeNotFoundError:
If *attr_name* couldn't be found on *cls*.
attrs.exceptions.NotAnAttrsClassError:
If *cls* is not an *attrs* class.
.. deprecated:: 17.1.0
Use `attrs.evolve` instead if you can. This function will not be
removed du to the slightly different approach compared to
`attrs.evolve`, though.
"""
new = copy.copy(inst)
attrs = fields(inst.__class__)
for k, v in changes.items():
a = getattr(attrs, k, NOTHING)
if a is NOTHING:
msg = f"{k} is not an attrs attribute on {new.__class__}."
raise AttrsAttributeNotFoundError(msg)
_OBJ_SETATTR(new, k, v)
return new
def resolve_types(
cls, globalns=None, localns=None, attribs=None, include_extras=True
):
"""
Resolve any strings and forward annotations in type annotations.
This is only required if you need concrete types in :class:`Attribute`'s
*type* field. In other words, you don't need to resolve your types if you
only use them for static type checking.
With no arguments, names will be looked up in the module in which the class
was created. If this is not what you want, for example, if the name only
exists inside a method, you may pass *globalns* or *localns* to specify
other dictionaries in which to look up these names. See the docs of
`typing.get_type_hints` for more details.
Args:
cls (type): Class to resolve.
globalns (dict | None): Dictionary containing global variables.
localns (dict | None): Dictionary containing local variables.
attribs (list | None):
List of attribs for the given class. This is necessary when calling
from inside a ``field_transformer`` since *cls* is not an *attrs*
class yet.
include_extras (bool):
Resolve more accurately, if possible. Pass ``include_extras`` to
``typing.get_hints``, if supported by the typing module. On
supported Python versions (3.9+), this resolves the types more
accurately.
Raises:
TypeError: If *cls* is not a class.
attrs.exceptions.NotAnAttrsClassError:
If *cls* is not an *attrs* class and you didn't pass any attribs.
NameError: If types cannot be resolved because of missing variables.
Returns:
*cls* so you can use this function also as a class decorator. Please
note that you have to apply it **after** `attrs.define`. That means the
decorator has to come in the line **before** `attrs.define`.
.. versionadded:: 20.1.0
.. versionadded:: 21.1.0 *attribs*
.. versionadded:: 23.1.0 *include_extras*
"""
# Since calling get_type_hints is expensive we cache whether we've
# done it already.
if getattr(cls, "__attrs_types_resolved__", None) != cls:
import typing
kwargs = {"globalns": globalns, "localns": localns}
if PY_3_9_PLUS:
kwargs["include_extras"] = include_extras
hints = typing.get_type_hints(cls, **kwargs)
for field in fields(cls) if attribs is None else attribs:
if field.name in hints:
# Since fields have been frozen we must work around it.
_OBJ_SETATTR(field, "type", hints[field.name])
# We store the class we resolved so that subclasses know they haven't
# been resolved.
cls.__attrs_types_resolved__ = cls
# Return the class so you can use it as a decorator too.
return cls

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# SPDX-License-Identifier: MIT
"""
These are keyword-only APIs that call `attr.s` and `attr.ib` with different
default values.
"""
from functools import partial
from . import setters
from ._funcs import asdict as _asdict
from ._funcs import astuple as _astuple
from ._make import (
_DEFAULT_ON_SETATTR,
NOTHING,
_frozen_setattrs,
attrib,
attrs,
)
from .exceptions import UnannotatedAttributeError
def define(
maybe_cls=None,
*,
these=None,
repr=None,
unsafe_hash=None,
hash=None,
init=None,
slots=True,
frozen=False,
weakref_slot=True,
str=False,
auto_attribs=None,
kw_only=False,
cache_hash=False,
auto_exc=True,
eq=None,
order=False,
auto_detect=True,
getstate_setstate=None,
on_setattr=None,
field_transformer=None,
match_args=True,
):
r"""
A class decorator that adds :term:`dunder methods` according to
:term:`fields <field>` specified using :doc:`type annotations <types>`,
`field()` calls, or the *these* argument.
Since *attrs* patches or replaces an existing class, you cannot use
`object.__init_subclass__` with *attrs* classes, because it runs too early.
As a replacement, you can define ``__attrs_init_subclass__`` on your class.
It will be called by *attrs* classes that subclass it after they're
created. See also :ref:`init-subclass`.
Args:
slots (bool):
Create a :term:`slotted class <slotted classes>` that's more
memory-efficient. Slotted classes are generally superior to the
default dict classes, but have some gotchas you should know about,
so we encourage you to read the :term:`glossary entry <slotted
classes>`.
auto_detect (bool):
Instead of setting the *init*, *repr*, *eq*, and *hash* arguments
explicitly, assume they are set to True **unless any** of the
involved methods for one of the arguments is implemented in the
*current* class (meaning, it is *not* inherited from some base
class).
So, for example by implementing ``__eq__`` on a class yourself,
*attrs* will deduce ``eq=False`` and will create *neither*
``__eq__`` *nor* ``__ne__`` (but Python classes come with a
sensible ``__ne__`` by default, so it *should* be enough to only
implement ``__eq__`` in most cases).
Passing True or False` to *init*, *repr*, *eq*, or *hash*
overrides whatever *auto_detect* would determine.
auto_exc (bool):
If the class subclasses `BaseException` (which implicitly includes
any subclass of any exception), the following happens to behave
like a well-behaved Python exception class:
- the values for *eq*, *order*, and *hash* are ignored and the
instances compare and hash by the instance's ids [#]_ ,
- all attributes that are either passed into ``__init__`` or have a
default value are additionally available as a tuple in the
``args`` attribute,
- the value of *str* is ignored leaving ``__str__`` to base
classes.
.. [#]
Note that *attrs* will *not* remove existing implementations of
``__hash__`` or the equality methods. It just won't add own
ones.
on_setattr (~typing.Callable | list[~typing.Callable] | None | ~typing.Literal[attrs.setters.NO_OP]):
A callable that is run whenever the user attempts to set an
attribute (either by assignment like ``i.x = 42`` or by using
`setattr` like ``setattr(i, "x", 42)``). It receives the same
arguments as validators: the instance, the attribute that is being
modified, and the new value.
If no exception is raised, the attribute is set to the return value
of the callable.
If a list of callables is passed, they're automatically wrapped in
an `attrs.setters.pipe`.
If left None, the default behavior is to run converters and
validators whenever an attribute is set.
init (bool):
Create a ``__init__`` method that initializes the *attrs*
attributes. Leading underscores are stripped for the argument name,
unless an alias is set on the attribute.
.. seealso::
`init` shows advanced ways to customize the generated
``__init__`` method, including executing code before and after.
repr(bool):
Create a ``__repr__`` method with a human readable representation
of *attrs* attributes.
str (bool):
Create a ``__str__`` method that is identical to ``__repr__``. This
is usually not necessary except for `Exception`\ s.
eq (bool | None):
If True or None (default), add ``__eq__`` and ``__ne__`` methods
that check two instances for equality.
.. seealso::
`comparison` describes how to customize the comparison behavior
going as far comparing NumPy arrays.
order (bool | None):
If True, add ``__lt__``, ``__le__``, ``__gt__``, and ``__ge__``
methods that behave like *eq* above and allow instances to be
ordered.
They compare the instances as if they were tuples of their *attrs*
attributes if and only if the types of both classes are
*identical*.
If `None` mirror value of *eq*.
.. seealso:: `comparison`
unsafe_hash (bool | None):
If None (default), the ``__hash__`` method is generated according
how *eq* and *frozen* are set.
1. If *both* are True, *attrs* will generate a ``__hash__`` for
you.
2. If *eq* is True and *frozen* is False, ``__hash__`` will be set
to None, marking it unhashable (which it is).
3. If *eq* is False, ``__hash__`` will be left untouched meaning
the ``__hash__`` method of the base class will be used. If the
base class is `object`, this means it will fall back to id-based
hashing.
Although not recommended, you can decide for yourself and force
*attrs* to create one (for example, if the class is immutable even
though you didn't freeze it programmatically) by passing True or
not. Both of these cases are rather special and should be used
carefully.
.. seealso::
- Our documentation on `hashing`,
- Python's documentation on `object.__hash__`,
- and the `GitHub issue that led to the default \ behavior
<https://github.com/python-attrs/attrs/issues/136>`_ for more
details.
hash (bool | None):
Deprecated alias for *unsafe_hash*. *unsafe_hash* takes precedence.
cache_hash (bool):
Ensure that the object's hash code is computed only once and stored
on the object. If this is set to True, hashing must be either
explicitly or implicitly enabled for this class. If the hash code
is cached, avoid any reassignments of fields involved in hash code
computation or mutations of the objects those fields point to after
object creation. If such changes occur, the behavior of the
object's hash code is undefined.
frozen (bool):
Make instances immutable after initialization. If someone attempts
to modify a frozen instance, `attrs.exceptions.FrozenInstanceError`
is raised.
.. note::
1. This is achieved by installing a custom ``__setattr__``
method on your class, so you can't implement your own.
2. True immutability is impossible in Python.
3. This *does* have a minor a runtime performance `impact
<how-frozen>` when initializing new instances. In other
words: ``__init__`` is slightly slower with ``frozen=True``.
4. If a class is frozen, you cannot modify ``self`` in
``__attrs_post_init__`` or a self-written ``__init__``. You
can circumvent that limitation by using
``object.__setattr__(self, "attribute_name", value)``.
5. Subclasses of a frozen class are frozen too.
kw_only (bool):
Make all attributes keyword-only in the generated ``__init__`` (if
*init* is False, this parameter is ignored).
weakref_slot (bool):
Make instances weak-referenceable. This has no effect unless
*slots* is True.
field_transformer (~typing.Callable | None):
A function that is called with the original class object and all
fields right before *attrs* finalizes the class. You can use this,
for example, to automatically add converters or validators to
fields based on their types.
.. seealso:: `transform-fields`
match_args (bool):
If True (default), set ``__match_args__`` on the class to support
:pep:`634` (*Structural Pattern Matching*). It is a tuple of all
non-keyword-only ``__init__`` parameter names on Python 3.10 and
later. Ignored on older Python versions.
collect_by_mro (bool):
If True, *attrs* collects attributes from base classes correctly
according to the `method resolution order
<https://docs.python.org/3/howto/mro.html>`_. If False, *attrs*
will mimic the (wrong) behavior of `dataclasses` and :pep:`681`.
See also `issue #428
<https://github.com/python-attrs/attrs/issues/428>`_.
getstate_setstate (bool | None):
.. note::
This is usually only interesting for slotted classes and you
should probably just set *auto_detect* to True.
If True, ``__getstate__`` and ``__setstate__`` are generated and
attached to the class. This is necessary for slotted classes to be
pickleable. If left None, it's True by default for slotted classes
and False for dict classes.
If *auto_detect* is True, and *getstate_setstate* is left None, and
**either** ``__getstate__`` or ``__setstate__`` is detected
directly on the class (meaning: not inherited), it is set to False
(this is usually what you want).
auto_attribs (bool | None):
If True, look at type annotations to determine which attributes to
use, like `dataclasses`. If False, it will only look for explicit
:func:`field` class attributes, like classic *attrs*.
If left None, it will guess:
1. If any attributes are annotated and no unannotated
`attrs.field`\ s are found, it assumes *auto_attribs=True*.
2. Otherwise it assumes *auto_attribs=False* and tries to collect
`attrs.field`\ s.
If *attrs* decides to look at type annotations, **all** fields
**must** be annotated. If *attrs* encounters a field that is set to
a :func:`field` / `attr.ib` but lacks a type annotation, an
`attrs.exceptions.UnannotatedAttributeError` is raised. Use
``field_name: typing.Any = field(...)`` if you don't want to set a
type.
.. warning::
For features that use the attribute name to create decorators
(for example, :ref:`validators <validators>`), you still *must*
assign :func:`field` / `attr.ib` to them. Otherwise Python will
either not find the name or try to use the default value to
call, for example, ``validator`` on it.
Attributes annotated as `typing.ClassVar`, and attributes that are
neither annotated nor set to an `field()` are **ignored**.
these (dict[str, object]):
A dictionary of name to the (private) return value of `field()`
mappings. This is useful to avoid the definition of your attributes
within the class body because you can't (for example, if you want
to add ``__repr__`` methods to Django models) or don't want to.
If *these* is not `None`, *attrs* will *not* search the class body
for attributes and will *not* remove any attributes from it.
The order is deduced from the order of the attributes inside
*these*.
Arguably, this is a rather obscure feature.
.. versionadded:: 20.1.0
.. versionchanged:: 21.3.0 Converters are also run ``on_setattr``.
.. versionadded:: 22.2.0
*unsafe_hash* as an alias for *hash* (for :pep:`681` compliance).
.. versionchanged:: 24.1.0
Instances are not compared as tuples of attributes anymore, but using a
big ``and`` condition. This is faster and has more correct behavior for
uncomparable values like `math.nan`.
.. versionadded:: 24.1.0
If a class has an *inherited* classmethod called
``__attrs_init_subclass__``, it is executed after the class is created.
.. deprecated:: 24.1.0 *hash* is deprecated in favor of *unsafe_hash*.
.. versionadded:: 24.3.0
Unless already present, a ``__replace__`` method is automatically
created for `copy.replace` (Python 3.13+ only).
.. note::
The main differences to the classic `attr.s` are:
- Automatically detect whether or not *auto_attribs* should be `True`
(c.f. *auto_attribs* parameter).
- Converters and validators run when attributes are set by default --
if *frozen* is `False`.
- *slots=True*
Usually, this has only upsides and few visible effects in everyday
programming. But it *can* lead to some surprising behaviors, so
please make sure to read :term:`slotted classes`.
- *auto_exc=True*
- *auto_detect=True*
- *order=False*
- Some options that were only relevant on Python 2 or were kept around
for backwards-compatibility have been removed.
"""
def do_it(cls, auto_attribs):
return attrs(
maybe_cls=cls,
these=these,
repr=repr,
hash=hash,
unsafe_hash=unsafe_hash,
init=init,
slots=slots,
frozen=frozen,
weakref_slot=weakref_slot,
str=str,
auto_attribs=auto_attribs,
kw_only=kw_only,
cache_hash=cache_hash,
auto_exc=auto_exc,
eq=eq,
order=order,
auto_detect=auto_detect,
collect_by_mro=True,
getstate_setstate=getstate_setstate,
on_setattr=on_setattr,
field_transformer=field_transformer,
match_args=match_args,
)
def wrap(cls):
"""
Making this a wrapper ensures this code runs during class creation.
We also ensure that frozen-ness of classes is inherited.
"""
nonlocal frozen, on_setattr
had_on_setattr = on_setattr not in (None, setters.NO_OP)
# By default, mutable classes convert & validate on setattr.
if frozen is False and on_setattr is None:
on_setattr = _DEFAULT_ON_SETATTR
# However, if we subclass a frozen class, we inherit the immutability
# and disable on_setattr.
for base_cls in cls.__bases__:
if base_cls.__setattr__ is _frozen_setattrs:
if had_on_setattr:
msg = "Frozen classes can't use on_setattr (frozen-ness was inherited)."
raise ValueError(msg)
on_setattr = setters.NO_OP
break
if auto_attribs is not None:
return do_it(cls, auto_attribs)
try:
return do_it(cls, True)
except UnannotatedAttributeError:
return do_it(cls, False)
# maybe_cls's type depends on the usage of the decorator. It's a class
# if it's used as `@attrs` but `None` if used as `@attrs()`.
if maybe_cls is None:
return wrap
return wrap(maybe_cls)
mutable = define
frozen = partial(define, frozen=True, on_setattr=None)
def field(
*,
default=NOTHING,
validator=None,
repr=True,
hash=None,
init=True,
metadata=None,
type=None,
converter=None,
factory=None,
kw_only=False,
eq=None,
order=None,
on_setattr=None,
alias=None,
):
"""
Create a new :term:`field` / :term:`attribute` on a class.
.. warning::
Does **nothing** unless the class is also decorated with
`attrs.define` (or similar)!
Args:
default:
A value that is used if an *attrs*-generated ``__init__`` is used
and no value is passed while instantiating or the attribute is
excluded using ``init=False``.
If the value is an instance of `attrs.Factory`, its callable will
be used to construct a new value (useful for mutable data types
like lists or dicts).
If a default is not set (or set manually to `attrs.NOTHING`), a
value *must* be supplied when instantiating; otherwise a
`TypeError` will be raised.
.. seealso:: `defaults`
factory (~typing.Callable):
Syntactic sugar for ``default=attr.Factory(factory)``.
validator (~typing.Callable | list[~typing.Callable]):
Callable that is called by *attrs*-generated ``__init__`` methods
after the instance has been initialized. They receive the
initialized instance, the :func:`~attrs.Attribute`, and the passed
value.
The return value is *not* inspected so the validator has to throw
an exception itself.
If a `list` is passed, its items are treated as validators and must
all pass.
Validators can be globally disabled and re-enabled using
`attrs.validators.get_disabled` / `attrs.validators.set_disabled`.
The validator can also be set using decorator notation as shown
below.
.. seealso:: :ref:`validators`
repr (bool | ~typing.Callable):
Include this attribute in the generated ``__repr__`` method. If
True, include the attribute; if False, omit it. By default, the
built-in ``repr()`` function is used. To override how the attribute
value is formatted, pass a ``callable`` that takes a single value
and returns a string. Note that the resulting string is used as-is,
which means it will be used directly *instead* of calling
``repr()`` (the default).
eq (bool | ~typing.Callable):
If True (default), include this attribute in the generated
``__eq__`` and ``__ne__`` methods that check two instances for
equality. To override how the attribute value is compared, pass a
callable that takes a single value and returns the value to be
compared.
.. seealso:: `comparison`
order (bool | ~typing.Callable):
If True (default), include this attributes in the generated
``__lt__``, ``__le__``, ``__gt__`` and ``__ge__`` methods. To
override how the attribute value is ordered, pass a callable that
takes a single value and returns the value to be ordered.
.. seealso:: `comparison`
hash (bool | None):
Include this attribute in the generated ``__hash__`` method. If
None (default), mirror *eq*'s value. This is the correct behavior
according the Python spec. Setting this value to anything else
than None is *discouraged*.
.. seealso:: `hashing`
init (bool):
Include this attribute in the generated ``__init__`` method.
It is possible to set this to False and set a default value. In
that case this attributed is unconditionally initialized with the
specified default value or factory.
.. seealso:: `init`
converter (typing.Callable | Converter):
A callable that is called by *attrs*-generated ``__init__`` methods
to convert attribute's value to the desired format.
If a vanilla callable is passed, it is given the passed-in value as
the only positional argument. It is possible to receive additional
arguments by wrapping the callable in a `Converter`.
Either way, the returned value will be used as the new value of the
attribute. The value is converted before being passed to the
validator, if any.
.. seealso:: :ref:`converters`
metadata (dict | None):
An arbitrary mapping, to be used by third-party code.
.. seealso:: `extending-metadata`.
type (type):
The type of the attribute. Nowadays, the preferred method to
specify the type is using a variable annotation (see :pep:`526`).
This argument is provided for backwards-compatibility and for usage
with `make_class`. Regardless of the approach used, the type will
be stored on ``Attribute.type``.
Please note that *attrs* doesn't do anything with this metadata by
itself. You can use it as part of your own code or for `static type
checking <types>`.
kw_only (bool):
Make this attribute keyword-only in the generated ``__init__`` (if
``init`` is False, this parameter is ignored).
on_setattr (~typing.Callable | list[~typing.Callable] | None | ~typing.Literal[attrs.setters.NO_OP]):
Allows to overwrite the *on_setattr* setting from `attr.s`. If left
None, the *on_setattr* value from `attr.s` is used. Set to
`attrs.setters.NO_OP` to run **no** `setattr` hooks for this
attribute -- regardless of the setting in `define()`.
alias (str | None):
Override this attribute's parameter name in the generated
``__init__`` method. If left None, default to ``name`` stripped
of leading underscores. See `private-attributes`.
.. versionadded:: 20.1.0
.. versionchanged:: 21.1.0
*eq*, *order*, and *cmp* also accept a custom callable
.. versionadded:: 22.2.0 *alias*
.. versionadded:: 23.1.0
The *type* parameter has been re-added; mostly for `attrs.make_class`.
Please note that type checkers ignore this metadata.
.. seealso::
`attr.ib`
"""
return attrib(
default=default,
validator=validator,
repr=repr,
hash=hash,
init=init,
metadata=metadata,
type=type,
converter=converter,
factory=factory,
kw_only=kw_only,
eq=eq,
order=order,
on_setattr=on_setattr,
alias=alias,
)
def asdict(inst, *, recurse=True, filter=None, value_serializer=None):
"""
Same as `attr.asdict`, except that collections types are always retained
and dict is always used as *dict_factory*.
.. versionadded:: 21.3.0
"""
return _asdict(
inst=inst,
recurse=recurse,
filter=filter,
value_serializer=value_serializer,
retain_collection_types=True,
)
def astuple(inst, *, recurse=True, filter=None):
"""
Same as `attr.astuple`, except that collections types are always retained
and `tuple` is always used as the *tuple_factory*.
.. versionadded:: 21.3.0
"""
return _astuple(
inst=inst, recurse=recurse, filter=filter, retain_collection_types=True
)

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@@ -0,0 +1,15 @@
from typing import Any, ClassVar, Protocol
# MYPY is a special constant in mypy which works the same way as `TYPE_CHECKING`.
MYPY = False
if MYPY:
# A protocol to be able to statically accept an attrs class.
class AttrsInstance_(Protocol):
__attrs_attrs__: ClassVar[Any]
else:
# For type checkers without plug-in support use an empty protocol that
# will (hopefully) be combined into a union.
class AttrsInstance_(Protocol):
pass

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@@ -0,0 +1,86 @@
# SPDX-License-Identifier: MIT
from functools import total_ordering
from ._funcs import astuple
from ._make import attrib, attrs
@total_ordering
@attrs(eq=False, order=False, slots=True, frozen=True)
class VersionInfo:
"""
A version object that can be compared to tuple of length 1--4:
>>> attr.VersionInfo(19, 1, 0, "final") <= (19, 2)
True
>>> attr.VersionInfo(19, 1, 0, "final") < (19, 1, 1)
True
>>> vi = attr.VersionInfo(19, 2, 0, "final")
>>> vi < (19, 1, 1)
False
>>> vi < (19,)
False
>>> vi == (19, 2,)
True
>>> vi == (19, 2, 1)
False
.. versionadded:: 19.2
"""
year = attrib(type=int)
minor = attrib(type=int)
micro = attrib(type=int)
releaselevel = attrib(type=str)
@classmethod
def _from_version_string(cls, s):
"""
Parse *s* and return a _VersionInfo.
"""
v = s.split(".")
if len(v) == 3:
v.append("final")
return cls(
year=int(v[0]), minor=int(v[1]), micro=int(v[2]), releaselevel=v[3]
)
def _ensure_tuple(self, other):
"""
Ensure *other* is a tuple of a valid length.
Returns a possibly transformed *other* and ourselves as a tuple of
the same length as *other*.
"""
if self.__class__ is other.__class__:
other = astuple(other)
if not isinstance(other, tuple):
raise NotImplementedError
if not (1 <= len(other) <= 4):
raise NotImplementedError
return astuple(self)[: len(other)], other
def __eq__(self, other):
try:
us, them = self._ensure_tuple(other)
except NotImplementedError:
return NotImplemented
return us == them
def __lt__(self, other):
try:
us, them = self._ensure_tuple(other)
except NotImplementedError:
return NotImplemented
# Since alphabetically "dev0" < "final" < "post1" < "post2", we don't
# have to do anything special with releaselevel for now.
return us < them

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@@ -0,0 +1,9 @@
class VersionInfo:
@property
def year(self) -> int: ...
@property
def minor(self) -> int: ...
@property
def micro(self) -> int: ...
@property
def releaselevel(self) -> str: ...

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@@ -0,0 +1,162 @@
# SPDX-License-Identifier: MIT
"""
Commonly useful converters.
"""
import typing
from ._compat import _AnnotationExtractor
from ._make import NOTHING, Converter, Factory, pipe
__all__ = [
"default_if_none",
"optional",
"pipe",
"to_bool",
]
def optional(converter):
"""
A converter that allows an attribute to be optional. An optional attribute
is one which can be set to `None`.
Type annotations will be inferred from the wrapped converter's, if it has
any.
Args:
converter (typing.Callable):
the converter that is used for non-`None` values.
.. versionadded:: 17.1.0
"""
if isinstance(converter, Converter):
def optional_converter(val, inst, field):
if val is None:
return None
return converter(val, inst, field)
else:
def optional_converter(val):
if val is None:
return None
return converter(val)
xtr = _AnnotationExtractor(converter)
t = xtr.get_first_param_type()
if t:
optional_converter.__annotations__["val"] = typing.Optional[t]
rt = xtr.get_return_type()
if rt:
optional_converter.__annotations__["return"] = typing.Optional[rt]
if isinstance(converter, Converter):
return Converter(optional_converter, takes_self=True, takes_field=True)
return optional_converter
def default_if_none(default=NOTHING, factory=None):
"""
A converter that allows to replace `None` values by *default* or the result
of *factory*.
Args:
default:
Value to be used if `None` is passed. Passing an instance of
`attrs.Factory` is supported, however the ``takes_self`` option is
*not*.
factory (typing.Callable):
A callable that takes no parameters whose result is used if `None`
is passed.
Raises:
TypeError: If **neither** *default* or *factory* is passed.
TypeError: If **both** *default* and *factory* are passed.
ValueError:
If an instance of `attrs.Factory` is passed with
``takes_self=True``.
.. versionadded:: 18.2.0
"""
if default is NOTHING and factory is None:
msg = "Must pass either `default` or `factory`."
raise TypeError(msg)
if default is not NOTHING and factory is not None:
msg = "Must pass either `default` or `factory` but not both."
raise TypeError(msg)
if factory is not None:
default = Factory(factory)
if isinstance(default, Factory):
if default.takes_self:
msg = "`takes_self` is not supported by default_if_none."
raise ValueError(msg)
def default_if_none_converter(val):
if val is not None:
return val
return default.factory()
else:
def default_if_none_converter(val):
if val is not None:
return val
return default
return default_if_none_converter
def to_bool(val):
"""
Convert "boolean" strings (for example, from environment variables) to real
booleans.
Values mapping to `True`:
- ``True``
- ``"true"`` / ``"t"``
- ``"yes"`` / ``"y"``
- ``"on"``
- ``"1"``
- ``1``
Values mapping to `False`:
- ``False``
- ``"false"`` / ``"f"``
- ``"no"`` / ``"n"``
- ``"off"``
- ``"0"``
- ``0``
Raises:
ValueError: For any other value.
.. versionadded:: 21.3.0
"""
if isinstance(val, str):
val = val.lower()
if val in (True, "true", "t", "yes", "y", "on", "1", 1):
return True
if val in (False, "false", "f", "no", "n", "off", "0", 0):
return False
msg = f"Cannot convert value to bool: {val!r}"
raise ValueError(msg)

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@@ -0,0 +1,19 @@
from typing import Callable, Any, overload
from attrs import _ConverterType, _CallableConverterType
@overload
def pipe(*validators: _CallableConverterType) -> _CallableConverterType: ...
@overload
def pipe(*validators: _ConverterType) -> _ConverterType: ...
@overload
def optional(converter: _CallableConverterType) -> _CallableConverterType: ...
@overload
def optional(converter: _ConverterType) -> _ConverterType: ...
@overload
def default_if_none(default: Any) -> _CallableConverterType: ...
@overload
def default_if_none(
*, factory: Callable[[], Any]
) -> _CallableConverterType: ...
def to_bool(val: str | int | bool) -> bool: ...

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@@ -0,0 +1,95 @@
# SPDX-License-Identifier: MIT
from __future__ import annotations
from typing import ClassVar
class FrozenError(AttributeError):
"""
A frozen/immutable instance or attribute have been attempted to be
modified.
It mirrors the behavior of ``namedtuples`` by using the same error message
and subclassing `AttributeError`.
.. versionadded:: 20.1.0
"""
msg = "can't set attribute"
args: ClassVar[tuple[str]] = [msg]
class FrozenInstanceError(FrozenError):
"""
A frozen instance has been attempted to be modified.
.. versionadded:: 16.1.0
"""
class FrozenAttributeError(FrozenError):
"""
A frozen attribute has been attempted to be modified.
.. versionadded:: 20.1.0
"""
class AttrsAttributeNotFoundError(ValueError):
"""
An *attrs* function couldn't find an attribute that the user asked for.
.. versionadded:: 16.2.0
"""
class NotAnAttrsClassError(ValueError):
"""
A non-*attrs* class has been passed into an *attrs* function.
.. versionadded:: 16.2.0
"""
class DefaultAlreadySetError(RuntimeError):
"""
A default has been set when defining the field and is attempted to be reset
using the decorator.
.. versionadded:: 17.1.0
"""
class UnannotatedAttributeError(RuntimeError):
"""
A class with ``auto_attribs=True`` has a field without a type annotation.
.. versionadded:: 17.3.0
"""
class PythonTooOldError(RuntimeError):
"""
It was attempted to use an *attrs* feature that requires a newer Python
version.
.. versionadded:: 18.2.0
"""
class NotCallableError(TypeError):
"""
A field requiring a callable has been set with a value that is not
callable.
.. versionadded:: 19.2.0
"""
def __init__(self, msg, value):
super(TypeError, self).__init__(msg, value)
self.msg = msg
self.value = value
def __str__(self):
return str(self.msg)

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@@ -0,0 +1,17 @@
from typing import Any
class FrozenError(AttributeError):
msg: str = ...
class FrozenInstanceError(FrozenError): ...
class FrozenAttributeError(FrozenError): ...
class AttrsAttributeNotFoundError(ValueError): ...
class NotAnAttrsClassError(ValueError): ...
class DefaultAlreadySetError(RuntimeError): ...
class UnannotatedAttributeError(RuntimeError): ...
class PythonTooOldError(RuntimeError): ...
class NotCallableError(TypeError):
msg: str = ...
value: Any = ...
def __init__(self, msg: str, value: Any) -> None: ...

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@@ -0,0 +1,72 @@
# SPDX-License-Identifier: MIT
"""
Commonly useful filters for `attrs.asdict` and `attrs.astuple`.
"""
from ._make import Attribute
def _split_what(what):
"""
Returns a tuple of `frozenset`s of classes and attributes.
"""
return (
frozenset(cls for cls in what if isinstance(cls, type)),
frozenset(cls for cls in what if isinstance(cls, str)),
frozenset(cls for cls in what if isinstance(cls, Attribute)),
)
def include(*what):
"""
Create a filter that only allows *what*.
Args:
what (list[type, str, attrs.Attribute]):
What to include. Can be a type, a name, or an attribute.
Returns:
Callable:
A callable that can be passed to `attrs.asdict`'s and
`attrs.astuple`'s *filter* argument.
.. versionchanged:: 23.1.0 Accept strings with field names.
"""
cls, names, attrs = _split_what(what)
def include_(attribute, value):
return (
value.__class__ in cls
or attribute.name in names
or attribute in attrs
)
return include_
def exclude(*what):
"""
Create a filter that does **not** allow *what*.
Args:
what (list[type, str, attrs.Attribute]):
What to exclude. Can be a type, a name, or an attribute.
Returns:
Callable:
A callable that can be passed to `attrs.asdict`'s and
`attrs.astuple`'s *filter* argument.
.. versionchanged:: 23.3.0 Accept field name string as input argument
"""
cls, names, attrs = _split_what(what)
def exclude_(attribute, value):
return not (
value.__class__ in cls
or attribute.name in names
or attribute in attrs
)
return exclude_

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@@ -0,0 +1,6 @@
from typing import Any
from . import Attribute, _FilterType
def include(*what: type | str | Attribute[Any]) -> _FilterType[Any]: ...
def exclude(*what: type | str | Attribute[Any]) -> _FilterType[Any]: ...

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@@ -0,0 +1,79 @@
# SPDX-License-Identifier: MIT
"""
Commonly used hooks for on_setattr.
"""
from . import _config
from .exceptions import FrozenAttributeError
def pipe(*setters):
"""
Run all *setters* and return the return value of the last one.
.. versionadded:: 20.1.0
"""
def wrapped_pipe(instance, attrib, new_value):
rv = new_value
for setter in setters:
rv = setter(instance, attrib, rv)
return rv
return wrapped_pipe
def frozen(_, __, ___):
"""
Prevent an attribute to be modified.
.. versionadded:: 20.1.0
"""
raise FrozenAttributeError
def validate(instance, attrib, new_value):
"""
Run *attrib*'s validator on *new_value* if it has one.
.. versionadded:: 20.1.0
"""
if _config._run_validators is False:
return new_value
v = attrib.validator
if not v:
return new_value
v(instance, attrib, new_value)
return new_value
def convert(instance, attrib, new_value):
"""
Run *attrib*'s converter -- if it has one -- on *new_value* and return the
result.
.. versionadded:: 20.1.0
"""
c = attrib.converter
if c:
# This can be removed once we drop 3.8 and use attrs.Converter instead.
from ._make import Converter
if not isinstance(c, Converter):
return c(new_value)
return c(new_value, instance, attrib)
return new_value
# Sentinel for disabling class-wide *on_setattr* hooks for certain attributes.
# Sphinx's autodata stopped working, so the docstring is inlined in the API
# docs.
NO_OP = object()

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@@ -0,0 +1,20 @@
from typing import Any, NewType, NoReturn, TypeVar
from . import Attribute
from attrs import _OnSetAttrType
_T = TypeVar("_T")
def frozen(
instance: Any, attribute: Attribute[Any], new_value: Any
) -> NoReturn: ...
def pipe(*setters: _OnSetAttrType) -> _OnSetAttrType: ...
def validate(instance: Any, attribute: Attribute[_T], new_value: _T) -> _T: ...
# convert is allowed to return Any, because they can be chained using pipe.
def convert(
instance: Any, attribute: Attribute[Any], new_value: Any
) -> Any: ...
_NoOpType = NewType("_NoOpType", object)
NO_OP: _NoOpType

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@@ -0,0 +1,710 @@
# SPDX-License-Identifier: MIT
"""
Commonly useful validators.
"""
import operator
import re
from contextlib import contextmanager
from re import Pattern
from ._config import get_run_validators, set_run_validators
from ._make import _AndValidator, and_, attrib, attrs
from .converters import default_if_none
from .exceptions import NotCallableError
__all__ = [
"and_",
"deep_iterable",
"deep_mapping",
"disabled",
"ge",
"get_disabled",
"gt",
"in_",
"instance_of",
"is_callable",
"le",
"lt",
"matches_re",
"max_len",
"min_len",
"not_",
"optional",
"or_",
"set_disabled",
]
def set_disabled(disabled):
"""
Globally disable or enable running validators.
By default, they are run.
Args:
disabled (bool): If `True`, disable running all validators.
.. warning::
This function is not thread-safe!
.. versionadded:: 21.3.0
"""
set_run_validators(not disabled)
def get_disabled():
"""
Return a bool indicating whether validators are currently disabled or not.
Returns:
bool:`True` if validators are currently disabled.
.. versionadded:: 21.3.0
"""
return not get_run_validators()
@contextmanager
def disabled():
"""
Context manager that disables running validators within its context.
.. warning::
This context manager is not thread-safe!
.. versionadded:: 21.3.0
"""
set_run_validators(False)
try:
yield
finally:
set_run_validators(True)
@attrs(repr=False, slots=True, unsafe_hash=True)
class _InstanceOfValidator:
type = attrib()
def __call__(self, inst, attr, value):
"""
We use a callable class to be able to change the ``__repr__``.
"""
if not isinstance(value, self.type):
msg = f"'{attr.name}' must be {self.type!r} (got {value!r} that is a {value.__class__!r})."
raise TypeError(
msg,
attr,
self.type,
value,
)
def __repr__(self):
return f"<instance_of validator for type {self.type!r}>"
def instance_of(type):
"""
A validator that raises a `TypeError` if the initializer is called with a
wrong type for this particular attribute (checks are performed using
`isinstance` therefore it's also valid to pass a tuple of types).
Args:
type (type | tuple[type]): The type to check for.
Raises:
TypeError:
With a human readable error message, the attribute (of type
`attrs.Attribute`), the expected type, and the value it got.
"""
return _InstanceOfValidator(type)
@attrs(repr=False, frozen=True, slots=True)
class _MatchesReValidator:
pattern = attrib()
match_func = attrib()
def __call__(self, inst, attr, value):
"""
We use a callable class to be able to change the ``__repr__``.
"""
if not self.match_func(value):
msg = f"'{attr.name}' must match regex {self.pattern.pattern!r} ({value!r} doesn't)"
raise ValueError(
msg,
attr,
self.pattern,
value,
)
def __repr__(self):
return f"<matches_re validator for pattern {self.pattern!r}>"
def matches_re(regex, flags=0, func=None):
r"""
A validator that raises `ValueError` if the initializer is called with a
string that doesn't match *regex*.
Args:
regex (str, re.Pattern):
A regex string or precompiled pattern to match against
flags (int):
Flags that will be passed to the underlying re function (default 0)
func (typing.Callable):
Which underlying `re` function to call. Valid options are
`re.fullmatch`, `re.search`, and `re.match`; the default `None`
means `re.fullmatch`. For performance reasons, the pattern is
always precompiled using `re.compile`.
.. versionadded:: 19.2.0
.. versionchanged:: 21.3.0 *regex* can be a pre-compiled pattern.
"""
valid_funcs = (re.fullmatch, None, re.search, re.match)
if func not in valid_funcs:
msg = "'func' must be one of {}.".format(
", ".join(
sorted((e and e.__name__) or "None" for e in set(valid_funcs))
)
)
raise ValueError(msg)
if isinstance(regex, Pattern):
if flags:
msg = "'flags' can only be used with a string pattern; pass flags to re.compile() instead"
raise TypeError(msg)
pattern = regex
else:
pattern = re.compile(regex, flags)
if func is re.match:
match_func = pattern.match
elif func is re.search:
match_func = pattern.search
else:
match_func = pattern.fullmatch
return _MatchesReValidator(pattern, match_func)
@attrs(repr=False, slots=True, unsafe_hash=True)
class _OptionalValidator:
validator = attrib()
def __call__(self, inst, attr, value):
if value is None:
return
self.validator(inst, attr, value)
def __repr__(self):
return f"<optional validator for {self.validator!r} or None>"
def optional(validator):
"""
A validator that makes an attribute optional. An optional attribute is one
which can be set to `None` in addition to satisfying the requirements of
the sub-validator.
Args:
validator
(typing.Callable | tuple[typing.Callable] | list[typing.Callable]):
A validator (or validators) that is used for non-`None` values.
.. versionadded:: 15.1.0
.. versionchanged:: 17.1.0 *validator* can be a list of validators.
.. versionchanged:: 23.1.0 *validator* can also be a tuple of validators.
"""
if isinstance(validator, (list, tuple)):
return _OptionalValidator(_AndValidator(validator))
return _OptionalValidator(validator)
@attrs(repr=False, slots=True, unsafe_hash=True)
class _InValidator:
options = attrib()
_original_options = attrib(hash=False)
def __call__(self, inst, attr, value):
try:
in_options = value in self.options
except TypeError: # e.g. `1 in "abc"`
in_options = False
if not in_options:
msg = f"'{attr.name}' must be in {self._original_options!r} (got {value!r})"
raise ValueError(
msg,
attr,
self._original_options,
value,
)
def __repr__(self):
return f"<in_ validator with options {self._original_options!r}>"
def in_(options):
"""
A validator that raises a `ValueError` if the initializer is called with a
value that does not belong in the *options* provided.
The check is performed using ``value in options``, so *options* has to
support that operation.
To keep the validator hashable, dicts, lists, and sets are transparently
transformed into a `tuple`.
Args:
options: Allowed options.
Raises:
ValueError:
With a human readable error message, the attribute (of type
`attrs.Attribute`), the expected options, and the value it got.
.. versionadded:: 17.1.0
.. versionchanged:: 22.1.0
The ValueError was incomplete until now and only contained the human
readable error message. Now it contains all the information that has
been promised since 17.1.0.
.. versionchanged:: 24.1.0
*options* that are a list, dict, or a set are now transformed into a
tuple to keep the validator hashable.
"""
repr_options = options
if isinstance(options, (list, dict, set)):
options = tuple(options)
return _InValidator(options, repr_options)
@attrs(repr=False, slots=False, unsafe_hash=True)
class _IsCallableValidator:
def __call__(self, inst, attr, value):
"""
We use a callable class to be able to change the ``__repr__``.
"""
if not callable(value):
message = (
"'{name}' must be callable "
"(got {value!r} that is a {actual!r})."
)
raise NotCallableError(
msg=message.format(
name=attr.name, value=value, actual=value.__class__
),
value=value,
)
def __repr__(self):
return "<is_callable validator>"
def is_callable():
"""
A validator that raises a `attrs.exceptions.NotCallableError` if the
initializer is called with a value for this particular attribute that is
not callable.
.. versionadded:: 19.1.0
Raises:
attrs.exceptions.NotCallableError:
With a human readable error message containing the attribute
(`attrs.Attribute`) name, and the value it got.
"""
return _IsCallableValidator()
@attrs(repr=False, slots=True, unsafe_hash=True)
class _DeepIterable:
member_validator = attrib(validator=is_callable())
iterable_validator = attrib(
default=None, validator=optional(is_callable())
)
def __call__(self, inst, attr, value):
"""
We use a callable class to be able to change the ``__repr__``.
"""
if self.iterable_validator is not None:
self.iterable_validator(inst, attr, value)
for member in value:
self.member_validator(inst, attr, member)
def __repr__(self):
iterable_identifier = (
""
if self.iterable_validator is None
else f" {self.iterable_validator!r}"
)
return (
f"<deep_iterable validator for{iterable_identifier}"
f" iterables of {self.member_validator!r}>"
)
def deep_iterable(member_validator, iterable_validator=None):
"""
A validator that performs deep validation of an iterable.
Args:
member_validator: Validator to apply to iterable members.
iterable_validator:
Validator to apply to iterable itself (optional).
Raises
TypeError: if any sub-validators fail
.. versionadded:: 19.1.0
"""
if isinstance(member_validator, (list, tuple)):
member_validator = and_(*member_validator)
return _DeepIterable(member_validator, iterable_validator)
@attrs(repr=False, slots=True, unsafe_hash=True)
class _DeepMapping:
key_validator = attrib(validator=is_callable())
value_validator = attrib(validator=is_callable())
mapping_validator = attrib(default=None, validator=optional(is_callable()))
def __call__(self, inst, attr, value):
"""
We use a callable class to be able to change the ``__repr__``.
"""
if self.mapping_validator is not None:
self.mapping_validator(inst, attr, value)
for key in value:
self.key_validator(inst, attr, key)
self.value_validator(inst, attr, value[key])
def __repr__(self):
return f"<deep_mapping validator for objects mapping {self.key_validator!r} to {self.value_validator!r}>"
def deep_mapping(key_validator, value_validator, mapping_validator=None):
"""
A validator that performs deep validation of a dictionary.
Args:
key_validator: Validator to apply to dictionary keys.
value_validator: Validator to apply to dictionary values.
mapping_validator:
Validator to apply to top-level mapping attribute (optional).
.. versionadded:: 19.1.0
Raises:
TypeError: if any sub-validators fail
"""
return _DeepMapping(key_validator, value_validator, mapping_validator)
@attrs(repr=False, frozen=True, slots=True)
class _NumberValidator:
bound = attrib()
compare_op = attrib()
compare_func = attrib()
def __call__(self, inst, attr, value):
"""
We use a callable class to be able to change the ``__repr__``.
"""
if not self.compare_func(value, self.bound):
msg = f"'{attr.name}' must be {self.compare_op} {self.bound}: {value}"
raise ValueError(msg)
def __repr__(self):
return f"<Validator for x {self.compare_op} {self.bound}>"
def lt(val):
"""
A validator that raises `ValueError` if the initializer is called with a
number larger or equal to *val*.
The validator uses `operator.lt` to compare the values.
Args:
val: Exclusive upper bound for values.
.. versionadded:: 21.3.0
"""
return _NumberValidator(val, "<", operator.lt)
def le(val):
"""
A validator that raises `ValueError` if the initializer is called with a
number greater than *val*.
The validator uses `operator.le` to compare the values.
Args:
val: Inclusive upper bound for values.
.. versionadded:: 21.3.0
"""
return _NumberValidator(val, "<=", operator.le)
def ge(val):
"""
A validator that raises `ValueError` if the initializer is called with a
number smaller than *val*.
The validator uses `operator.ge` to compare the values.
Args:
val: Inclusive lower bound for values
.. versionadded:: 21.3.0
"""
return _NumberValidator(val, ">=", operator.ge)
def gt(val):
"""
A validator that raises `ValueError` if the initializer is called with a
number smaller or equal to *val*.
The validator uses `operator.ge` to compare the values.
Args:
val: Exclusive lower bound for values
.. versionadded:: 21.3.0
"""
return _NumberValidator(val, ">", operator.gt)
@attrs(repr=False, frozen=True, slots=True)
class _MaxLengthValidator:
max_length = attrib()
def __call__(self, inst, attr, value):
"""
We use a callable class to be able to change the ``__repr__``.
"""
if len(value) > self.max_length:
msg = f"Length of '{attr.name}' must be <= {self.max_length}: {len(value)}"
raise ValueError(msg)
def __repr__(self):
return f"<max_len validator for {self.max_length}>"
def max_len(length):
"""
A validator that raises `ValueError` if the initializer is called
with a string or iterable that is longer than *length*.
Args:
length (int): Maximum length of the string or iterable
.. versionadded:: 21.3.0
"""
return _MaxLengthValidator(length)
@attrs(repr=False, frozen=True, slots=True)
class _MinLengthValidator:
min_length = attrib()
def __call__(self, inst, attr, value):
"""
We use a callable class to be able to change the ``__repr__``.
"""
if len(value) < self.min_length:
msg = f"Length of '{attr.name}' must be >= {self.min_length}: {len(value)}"
raise ValueError(msg)
def __repr__(self):
return f"<min_len validator for {self.min_length}>"
def min_len(length):
"""
A validator that raises `ValueError` if the initializer is called
with a string or iterable that is shorter than *length*.
Args:
length (int): Minimum length of the string or iterable
.. versionadded:: 22.1.0
"""
return _MinLengthValidator(length)
@attrs(repr=False, slots=True, unsafe_hash=True)
class _SubclassOfValidator:
type = attrib()
def __call__(self, inst, attr, value):
"""
We use a callable class to be able to change the ``__repr__``.
"""
if not issubclass(value, self.type):
msg = f"'{attr.name}' must be a subclass of {self.type!r} (got {value!r})."
raise TypeError(
msg,
attr,
self.type,
value,
)
def __repr__(self):
return f"<subclass_of validator for type {self.type!r}>"
def _subclass_of(type):
"""
A validator that raises a `TypeError` if the initializer is called with a
wrong type for this particular attribute (checks are performed using
`issubclass` therefore it's also valid to pass a tuple of types).
Args:
type (type | tuple[type, ...]): The type(s) to check for.
Raises:
TypeError:
With a human readable error message, the attribute (of type
`attrs.Attribute`), the expected type, and the value it got.
"""
return _SubclassOfValidator(type)
@attrs(repr=False, slots=True, unsafe_hash=True)
class _NotValidator:
validator = attrib()
msg = attrib(
converter=default_if_none(
"not_ validator child '{validator!r}' "
"did not raise a captured error"
)
)
exc_types = attrib(
validator=deep_iterable(
member_validator=_subclass_of(Exception),
iterable_validator=instance_of(tuple),
),
)
def __call__(self, inst, attr, value):
try:
self.validator(inst, attr, value)
except self.exc_types:
pass # suppress error to invert validity
else:
raise ValueError(
self.msg.format(
validator=self.validator,
exc_types=self.exc_types,
),
attr,
self.validator,
value,
self.exc_types,
)
def __repr__(self):
return f"<not_ validator wrapping {self.validator!r}, capturing {self.exc_types!r}>"
def not_(validator, *, msg=None, exc_types=(ValueError, TypeError)):
"""
A validator that wraps and logically 'inverts' the validator passed to it.
It will raise a `ValueError` if the provided validator *doesn't* raise a
`ValueError` or `TypeError` (by default), and will suppress the exception
if the provided validator *does*.
Intended to be used with existing validators to compose logic without
needing to create inverted variants, for example, ``not_(in_(...))``.
Args:
validator: A validator to be logically inverted.
msg (str):
Message to raise if validator fails. Formatted with keys
``exc_types`` and ``validator``.
exc_types (tuple[type, ...]):
Exception type(s) to capture. Other types raised by child
validators will not be intercepted and pass through.
Raises:
ValueError:
With a human readable error message, the attribute (of type
`attrs.Attribute`), the validator that failed to raise an
exception, the value it got, and the expected exception types.
.. versionadded:: 22.2.0
"""
try:
exc_types = tuple(exc_types)
except TypeError:
exc_types = (exc_types,)
return _NotValidator(validator, msg, exc_types)
@attrs(repr=False, slots=True, unsafe_hash=True)
class _OrValidator:
validators = attrib()
def __call__(self, inst, attr, value):
for v in self.validators:
try:
v(inst, attr, value)
except Exception: # noqa: BLE001, PERF203, S112
continue
else:
return
msg = f"None of {self.validators!r} satisfied for value {value!r}"
raise ValueError(msg)
def __repr__(self):
return f"<or validator wrapping {self.validators!r}>"
def or_(*validators):
"""
A validator that composes multiple validators into one.
When called on a value, it runs all wrapped validators until one of them is
satisfied.
Args:
validators (~collections.abc.Iterable[typing.Callable]):
Arbitrary number of validators.
Raises:
ValueError:
If no validator is satisfied. Raised with a human-readable error
message listing all the wrapped validators and the value that
failed all of them.
.. versionadded:: 24.1.0
"""
vals = []
for v in validators:
vals.extend(v.validators if isinstance(v, _OrValidator) else [v])
return _OrValidator(tuple(vals))

View File

@@ -0,0 +1,86 @@
from types import UnionType
from typing import (
Any,
AnyStr,
Callable,
Container,
ContextManager,
Iterable,
Mapping,
Match,
Pattern,
TypeVar,
overload,
)
from attrs import _ValidatorType
from attrs import _ValidatorArgType
_T = TypeVar("_T")
_T1 = TypeVar("_T1")
_T2 = TypeVar("_T2")
_T3 = TypeVar("_T3")
_I = TypeVar("_I", bound=Iterable)
_K = TypeVar("_K")
_V = TypeVar("_V")
_M = TypeVar("_M", bound=Mapping)
def set_disabled(run: bool) -> None: ...
def get_disabled() -> bool: ...
def disabled() -> ContextManager[None]: ...
# To be more precise on instance_of use some overloads.
# If there are more than 3 items in the tuple then we fall back to Any
@overload
def instance_of(type: type[_T]) -> _ValidatorType[_T]: ...
@overload
def instance_of(type: tuple[type[_T]]) -> _ValidatorType[_T]: ...
@overload
def instance_of(
type: tuple[type[_T1], type[_T2]],
) -> _ValidatorType[_T1 | _T2]: ...
@overload
def instance_of(
type: tuple[type[_T1], type[_T2], type[_T3]],
) -> _ValidatorType[_T1 | _T2 | _T3]: ...
@overload
def instance_of(type: tuple[type, ...]) -> _ValidatorType[Any]: ...
@overload
def instance_of(type: UnionType) -> _ValidatorType[Any]: ...
def optional(
validator: (
_ValidatorType[_T]
| list[_ValidatorType[_T]]
| tuple[_ValidatorType[_T]]
),
) -> _ValidatorType[_T | None]: ...
def in_(options: Container[_T]) -> _ValidatorType[_T]: ...
def and_(*validators: _ValidatorType[_T]) -> _ValidatorType[_T]: ...
def matches_re(
regex: Pattern[AnyStr] | AnyStr,
flags: int = ...,
func: Callable[[AnyStr, AnyStr, int], Match[AnyStr] | None] | None = ...,
) -> _ValidatorType[AnyStr]: ...
def deep_iterable(
member_validator: _ValidatorArgType[_T],
iterable_validator: _ValidatorType[_I] | None = ...,
) -> _ValidatorType[_I]: ...
def deep_mapping(
key_validator: _ValidatorType[_K],
value_validator: _ValidatorType[_V],
mapping_validator: _ValidatorType[_M] | None = ...,
) -> _ValidatorType[_M]: ...
def is_callable() -> _ValidatorType[_T]: ...
def lt(val: _T) -> _ValidatorType[_T]: ...
def le(val: _T) -> _ValidatorType[_T]: ...
def ge(val: _T) -> _ValidatorType[_T]: ...
def gt(val: _T) -> _ValidatorType[_T]: ...
def max_len(length: int) -> _ValidatorType[_T]: ...
def min_len(length: int) -> _ValidatorType[_T]: ...
def not_(
validator: _ValidatorType[_T],
*,
msg: str | None = None,
exc_types: type[Exception] | Iterable[type[Exception]] = ...,
) -> _ValidatorType[_T]: ...
def or_(*validators: _ValidatorType[_T]) -> _ValidatorType[_T]: ...

View File

@@ -0,0 +1,232 @@
Metadata-Version: 2.4
Name: attrs
Version: 25.3.0
Summary: Classes Without Boilerplate
Project-URL: Documentation, https://www.attrs.org/
Project-URL: Changelog, https://www.attrs.org/en/stable/changelog.html
Project-URL: GitHub, https://github.com/python-attrs/attrs
Project-URL: Funding, https://github.com/sponsors/hynek
Project-URL: Tidelift, https://tidelift.com/subscription/pkg/pypi-attrs?utm_source=pypi-attrs&utm_medium=pypi
Author-email: Hynek Schlawack <hs@ox.cx>
License-Expression: MIT
License-File: LICENSE
Keywords: attribute,boilerplate,class
Classifier: Development Status :: 5 - Production/Stable
Classifier: Programming Language :: Python :: 3.8
Classifier: Programming Language :: Python :: 3.9
Classifier: Programming Language :: Python :: 3.10
Classifier: Programming Language :: Python :: 3.11
Classifier: Programming Language :: Python :: 3.12
Classifier: Programming Language :: Python :: 3.13
Classifier: Programming Language :: Python :: Implementation :: CPython
Classifier: Programming Language :: Python :: Implementation :: PyPy
Classifier: Typing :: Typed
Requires-Python: >=3.8
Provides-Extra: benchmark
Requires-Dist: cloudpickle; (platform_python_implementation == 'CPython') and extra == 'benchmark'
Requires-Dist: hypothesis; extra == 'benchmark'
Requires-Dist: mypy>=1.11.1; (platform_python_implementation == 'CPython' and python_version >= '3.10') and extra == 'benchmark'
Requires-Dist: pympler; extra == 'benchmark'
Requires-Dist: pytest-codspeed; extra == 'benchmark'
Requires-Dist: pytest-mypy-plugins; (platform_python_implementation == 'CPython' and python_version >= '3.10') and extra == 'benchmark'
Requires-Dist: pytest-xdist[psutil]; extra == 'benchmark'
Requires-Dist: pytest>=4.3.0; extra == 'benchmark'
Provides-Extra: cov
Requires-Dist: cloudpickle; (platform_python_implementation == 'CPython') and extra == 'cov'
Requires-Dist: coverage[toml]>=5.3; extra == 'cov'
Requires-Dist: hypothesis; extra == 'cov'
Requires-Dist: mypy>=1.11.1; (platform_python_implementation == 'CPython' and python_version >= '3.10') and extra == 'cov'
Requires-Dist: pympler; extra == 'cov'
Requires-Dist: pytest-mypy-plugins; (platform_python_implementation == 'CPython' and python_version >= '3.10') and extra == 'cov'
Requires-Dist: pytest-xdist[psutil]; extra == 'cov'
Requires-Dist: pytest>=4.3.0; extra == 'cov'
Provides-Extra: dev
Requires-Dist: cloudpickle; (platform_python_implementation == 'CPython') and extra == 'dev'
Requires-Dist: hypothesis; extra == 'dev'
Requires-Dist: mypy>=1.11.1; (platform_python_implementation == 'CPython' and python_version >= '3.10') and extra == 'dev'
Requires-Dist: pre-commit-uv; extra == 'dev'
Requires-Dist: pympler; extra == 'dev'
Requires-Dist: pytest-mypy-plugins; (platform_python_implementation == 'CPython' and python_version >= '3.10') and extra == 'dev'
Requires-Dist: pytest-xdist[psutil]; extra == 'dev'
Requires-Dist: pytest>=4.3.0; extra == 'dev'
Provides-Extra: docs
Requires-Dist: cogapp; extra == 'docs'
Requires-Dist: furo; extra == 'docs'
Requires-Dist: myst-parser; extra == 'docs'
Requires-Dist: sphinx; extra == 'docs'
Requires-Dist: sphinx-notfound-page; extra == 'docs'
Requires-Dist: sphinxcontrib-towncrier; extra == 'docs'
Requires-Dist: towncrier; extra == 'docs'
Provides-Extra: tests
Requires-Dist: cloudpickle; (platform_python_implementation == 'CPython') and extra == 'tests'
Requires-Dist: hypothesis; extra == 'tests'
Requires-Dist: mypy>=1.11.1; (platform_python_implementation == 'CPython' and python_version >= '3.10') and extra == 'tests'
Requires-Dist: pympler; extra == 'tests'
Requires-Dist: pytest-mypy-plugins; (platform_python_implementation == 'CPython' and python_version >= '3.10') and extra == 'tests'
Requires-Dist: pytest-xdist[psutil]; extra == 'tests'
Requires-Dist: pytest>=4.3.0; extra == 'tests'
Provides-Extra: tests-mypy
Requires-Dist: mypy>=1.11.1; (platform_python_implementation == 'CPython' and python_version >= '3.10') and extra == 'tests-mypy'
Requires-Dist: pytest-mypy-plugins; (platform_python_implementation == 'CPython' and python_version >= '3.10') and extra == 'tests-mypy'
Description-Content-Type: text/markdown
<p align="center">
<a href="https://www.attrs.org/">
<img src="https://raw.githubusercontent.com/python-attrs/attrs/main/docs/_static/attrs_logo.svg" width="35%" alt="attrs" />
</a>
</p>
*attrs* is the Python package that will bring back the **joy** of **writing classes** by relieving you from the drudgery of implementing object protocols (aka [dunder methods](https://www.attrs.org/en/latest/glossary.html#term-dunder-methods)).
[Trusted by NASA](https://docs.github.com/en/account-and-profile/setting-up-and-managing-your-github-profile/customizing-your-profile/personalizing-your-profile#list-of-qualifying-repositories-for-mars-2020-helicopter-contributor-achievement) for Mars missions since 2020!
Its main goal is to help you to write **concise** and **correct** software without slowing down your code.
## Sponsors
*attrs* would not be possible without our [amazing sponsors](https://github.com/sponsors/hynek).
Especially those generously supporting us at the *The Organization* tier and higher:
<!-- sponsor-break-begin -->
<p align="center">
<!-- [[[cog
import pathlib, tomllib
for sponsor in tomllib.loads(pathlib.Path("pyproject.toml").read_text())["tool"]["sponcon"]["sponsors"]:
print(f'<a href="{sponsor["url"]}"><img title="{sponsor["title"]}" src="https://www.attrs.org/en/25.3.0/_static/sponsors/{sponsor["img"]}" width="190" /></a>')
]]] -->
<a href="https://www.variomedia.de/"><img title="Variomedia AG" src="https://www.attrs.org/en/25.3.0/_static/sponsors/Variomedia.svg" width="190" /></a>
<a href="https://tidelift.com/?utm_source=lifter&utm_medium=referral&utm_campaign=hynek"><img title="Tidelift" src="https://www.attrs.org/en/25.3.0/_static/sponsors/Tidelift.svg" width="190" /></a>
<a href="https://klaviyo.com/"><img title="Klaviyo" src="https://www.attrs.org/en/25.3.0/_static/sponsors/Klaviyo.svg" width="190" /></a>
<a href="https://privacy-solutions.org/"><img title="Privacy Solutions" src="https://www.attrs.org/en/25.3.0/_static/sponsors/Privacy-Solutions.svg" width="190" /></a>
<a href="https://www.emsys-renewables.com/"><img title="emsys renewables" src="https://www.attrs.org/en/25.3.0/_static/sponsors/emsys-renewables.svg" width="190" /></a>
<a href="https://filepreviews.io/"><img title="FilePreviews" src="https://www.attrs.org/en/25.3.0/_static/sponsors/FilePreviews.svg" width="190" /></a>
<a href="https://polar.sh/"><img title="Polar" src="https://www.attrs.org/en/25.3.0/_static/sponsors/Polar.svg" width="190" /></a>
<!-- [[[end]]] -->
</p>
<!-- sponsor-break-end -->
<p align="center">
<strong>Please consider <a href="https://github.com/sponsors/hynek">joining them</a> to help make <em>attrs</em>s maintenance more sustainable!</strong>
</p>
<!-- teaser-end -->
## Example
*attrs* gives you a class decorator and a way to declaratively define the attributes on that class:
<!-- code-begin -->
```pycon
>>> from attrs import asdict, define, make_class, Factory
>>> @define
... class SomeClass:
... a_number: int = 42
... list_of_numbers: list[int] = Factory(list)
...
... def hard_math(self, another_number):
... return self.a_number + sum(self.list_of_numbers) * another_number
>>> sc = SomeClass(1, [1, 2, 3])
>>> sc
SomeClass(a_number=1, list_of_numbers=[1, 2, 3])
>>> sc.hard_math(3)
19
>>> sc == SomeClass(1, [1, 2, 3])
True
>>> sc != SomeClass(2, [3, 2, 1])
True
>>> asdict(sc)
{'a_number': 1, 'list_of_numbers': [1, 2, 3]}
>>> SomeClass()
SomeClass(a_number=42, list_of_numbers=[])
>>> C = make_class("C", ["a", "b"])
>>> C("foo", "bar")
C(a='foo', b='bar')
```
After *declaring* your attributes, *attrs* gives you:
- a concise and explicit overview of the class's attributes,
- a nice human-readable `__repr__`,
- equality-checking methods,
- an initializer,
- and much more,
*without* writing dull boilerplate code again and again and *without* runtime performance penalties.
---
This example uses *attrs*'s modern APIs that have been introduced in version 20.1.0, and the *attrs* package import name that has been added in version 21.3.0.
The classic APIs (`@attr.s`, `attr.ib`, plus their serious-business aliases) and the `attr` package import name will remain **indefinitely**.
Check out [*On The Core API Names*](https://www.attrs.org/en/latest/names.html) for an in-depth explanation!
### Hate Type Annotations!?
No problem!
Types are entirely **optional** with *attrs*.
Simply assign `attrs.field()` to the attributes instead of annotating them with types:
```python
from attrs import define, field
@define
class SomeClass:
a_number = field(default=42)
list_of_numbers = field(factory=list)
```
## Data Classes
On the tin, *attrs* might remind you of `dataclasses` (and indeed, `dataclasses` [are a descendant](https://hynek.me/articles/import-attrs/) of *attrs*).
In practice it does a lot more and is more flexible.
For instance, it allows you to define [special handling of NumPy arrays for equality checks](https://www.attrs.org/en/stable/comparison.html#customization), allows more ways to [plug into the initialization process](https://www.attrs.org/en/stable/init.html#hooking-yourself-into-initialization), has a replacement for `__init_subclass__`, and allows for stepping through the generated methods using a debugger.
For more details, please refer to our [comparison page](https://www.attrs.org/en/stable/why.html#data-classes), but generally speaking, we are more likely to commit crimes against nature to make things work that one would expect to work, but that are quite complicated in practice.
## Project Information
- [**Changelog**](https://www.attrs.org/en/stable/changelog.html)
- [**Documentation**](https://www.attrs.org/)
- [**PyPI**](https://pypi.org/project/attrs/)
- [**Source Code**](https://github.com/python-attrs/attrs)
- [**Contributing**](https://github.com/python-attrs/attrs/blob/main/.github/CONTRIBUTING.md)
- [**Third-party Extensions**](https://github.com/python-attrs/attrs/wiki/Extensions-to-attrs)
- **Get Help**: use the `python-attrs` tag on [Stack Overflow](https://stackoverflow.com/questions/tagged/python-attrs)
### *attrs* for Enterprise
Available as part of the [Tidelift Subscription](https://tidelift.com/?utm_source=lifter&utm_medium=referral&utm_campaign=hynek).
The maintainers of *attrs* and thousands of other packages are working with Tidelift to deliver commercial support and maintenance for the open source packages you use to build your applications.
Save time, reduce risk, and improve code health, while paying the maintainers of the exact packages you use.
## Release Information
### Changes
- Restore support for generator-based `field_transformer`s.
[#1417](https://github.com/python-attrs/attrs/issues/1417)
---
[Full changelog →](https://www.attrs.org/en/stable/changelog.html)

View File

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Wheel-Version: 1.0
Generator: hatchling 1.27.0
Root-Is-Purelib: true
Tag: py3-none-any

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@@ -0,0 +1,21 @@
The MIT License (MIT)
Copyright (c) 2015 Hynek Schlawack and the attrs contributors
Permission is hereby granted, free of charge, to any person obtaining a copy
of this software and associated documentation files (the "Software"), to deal
in the Software without restriction, including without limitation the rights
to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
copies of the Software, and to permit persons to whom the Software is
furnished to do so, subject to the following conditions:
The above copyright notice and this permission notice shall be included in all
copies or substantial portions of the Software.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
SOFTWARE.

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@@ -0,0 +1,69 @@
# SPDX-License-Identifier: MIT
from attr import (
NOTHING,
Attribute,
AttrsInstance,
Converter,
Factory,
NothingType,
_make_getattr,
assoc,
cmp_using,
define,
evolve,
field,
fields,
fields_dict,
frozen,
has,
make_class,
mutable,
resolve_types,
validate,
)
from attr._next_gen import asdict, astuple
from . import converters, exceptions, filters, setters, validators
__all__ = [
"NOTHING",
"Attribute",
"AttrsInstance",
"Converter",
"Factory",
"NothingType",
"__author__",
"__copyright__",
"__description__",
"__doc__",
"__email__",
"__license__",
"__title__",
"__url__",
"__version__",
"__version_info__",
"asdict",
"assoc",
"astuple",
"cmp_using",
"converters",
"define",
"evolve",
"exceptions",
"field",
"fields",
"fields_dict",
"filters",
"frozen",
"has",
"make_class",
"mutable",
"resolve_types",
"setters",
"validate",
"validators",
]
__getattr__ = _make_getattr(__name__)

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@@ -0,0 +1,263 @@
import sys
from typing import (
Any,
Callable,
Mapping,
Sequence,
overload,
TypeVar,
)
# Because we need to type our own stuff, we have to make everything from
# attr explicitly public too.
from attr import __author__ as __author__
from attr import __copyright__ as __copyright__
from attr import __description__ as __description__
from attr import __email__ as __email__
from attr import __license__ as __license__
from attr import __title__ as __title__
from attr import __url__ as __url__
from attr import __version__ as __version__
from attr import __version_info__ as __version_info__
from attr import assoc as assoc
from attr import Attribute as Attribute
from attr import AttrsInstance as AttrsInstance
from attr import cmp_using as cmp_using
from attr import converters as converters
from attr import Converter as Converter
from attr import evolve as evolve
from attr import exceptions as exceptions
from attr import Factory as Factory
from attr import fields as fields
from attr import fields_dict as fields_dict
from attr import filters as filters
from attr import has as has
from attr import make_class as make_class
from attr import NOTHING as NOTHING
from attr import resolve_types as resolve_types
from attr import setters as setters
from attr import validate as validate
from attr import validators as validators
from attr import attrib, asdict as asdict, astuple as astuple
from attr import NothingType as NothingType
if sys.version_info >= (3, 11):
from typing import dataclass_transform
else:
from typing_extensions import dataclass_transform
_T = TypeVar("_T")
_C = TypeVar("_C", bound=type)
_EqOrderType = bool | Callable[[Any], Any]
_ValidatorType = Callable[[Any, "Attribute[_T]", _T], Any]
_CallableConverterType = Callable[[Any], Any]
_ConverterType = _CallableConverterType | Converter[Any, Any]
_ReprType = Callable[[Any], str]
_ReprArgType = bool | _ReprType
_OnSetAttrType = Callable[[Any, "Attribute[Any]", Any], Any]
_OnSetAttrArgType = _OnSetAttrType | list[_OnSetAttrType] | setters._NoOpType
_FieldTransformer = Callable[
[type, list["Attribute[Any]"]], list["Attribute[Any]"]
]
# FIXME: in reality, if multiple validators are passed they must be in a list
# or tuple, but those are invariant and so would prevent subtypes of
# _ValidatorType from working when passed in a list or tuple.
_ValidatorArgType = _ValidatorType[_T] | Sequence[_ValidatorType[_T]]
@overload
def field(
*,
default: None = ...,
validator: None = ...,
repr: _ReprArgType = ...,
hash: bool | None = ...,
init: bool = ...,
metadata: Mapping[Any, Any] | None = ...,
converter: None = ...,
factory: None = ...,
kw_only: bool = ...,
eq: bool | None = ...,
order: bool | None = ...,
on_setattr: _OnSetAttrArgType | None = ...,
alias: str | None = ...,
type: type | None = ...,
) -> Any: ...
# This form catches an explicit None or no default and infers the type from the
# other arguments.
@overload
def field(
*,
default: None = ...,
validator: _ValidatorArgType[_T] | None = ...,
repr: _ReprArgType = ...,
hash: bool | None = ...,
init: bool = ...,
metadata: Mapping[Any, Any] | None = ...,
converter: _ConverterType
| list[_ConverterType]
| tuple[_ConverterType]
| None = ...,
factory: Callable[[], _T] | None = ...,
kw_only: bool = ...,
eq: _EqOrderType | None = ...,
order: _EqOrderType | None = ...,
on_setattr: _OnSetAttrArgType | None = ...,
alias: str | None = ...,
type: type | None = ...,
) -> _T: ...
# This form catches an explicit default argument.
@overload
def field(
*,
default: _T,
validator: _ValidatorArgType[_T] | None = ...,
repr: _ReprArgType = ...,
hash: bool | None = ...,
init: bool = ...,
metadata: Mapping[Any, Any] | None = ...,
converter: _ConverterType
| list[_ConverterType]
| tuple[_ConverterType]
| None = ...,
factory: Callable[[], _T] | None = ...,
kw_only: bool = ...,
eq: _EqOrderType | None = ...,
order: _EqOrderType | None = ...,
on_setattr: _OnSetAttrArgType | None = ...,
alias: str | None = ...,
type: type | None = ...,
) -> _T: ...
# This form covers type=non-Type: e.g. forward references (str), Any
@overload
def field(
*,
default: _T | None = ...,
validator: _ValidatorArgType[_T] | None = ...,
repr: _ReprArgType = ...,
hash: bool | None = ...,
init: bool = ...,
metadata: Mapping[Any, Any] | None = ...,
converter: _ConverterType
| list[_ConverterType]
| tuple[_ConverterType]
| None = ...,
factory: Callable[[], _T] | None = ...,
kw_only: bool = ...,
eq: _EqOrderType | None = ...,
order: _EqOrderType | None = ...,
on_setattr: _OnSetAttrArgType | None = ...,
alias: str | None = ...,
type: type | None = ...,
) -> Any: ...
@overload
@dataclass_transform(field_specifiers=(attrib, field))
def define(
maybe_cls: _C,
*,
these: dict[str, Any] | None = ...,
repr: bool = ...,
unsafe_hash: bool | None = ...,
hash: bool | None = ...,
init: bool = ...,
slots: bool = ...,
frozen: bool = ...,
weakref_slot: bool = ...,
str: bool = ...,
auto_attribs: bool = ...,
kw_only: bool = ...,
cache_hash: bool = ...,
auto_exc: bool = ...,
eq: bool | None = ...,
order: bool | None = ...,
auto_detect: bool = ...,
getstate_setstate: bool | None = ...,
on_setattr: _OnSetAttrArgType | None = ...,
field_transformer: _FieldTransformer | None = ...,
match_args: bool = ...,
) -> _C: ...
@overload
@dataclass_transform(field_specifiers=(attrib, field))
def define(
maybe_cls: None = ...,
*,
these: dict[str, Any] | None = ...,
repr: bool = ...,
unsafe_hash: bool | None = ...,
hash: bool | None = ...,
init: bool = ...,
slots: bool = ...,
frozen: bool = ...,
weakref_slot: bool = ...,
str: bool = ...,
auto_attribs: bool = ...,
kw_only: bool = ...,
cache_hash: bool = ...,
auto_exc: bool = ...,
eq: bool | None = ...,
order: bool | None = ...,
auto_detect: bool = ...,
getstate_setstate: bool | None = ...,
on_setattr: _OnSetAttrArgType | None = ...,
field_transformer: _FieldTransformer | None = ...,
match_args: bool = ...,
) -> Callable[[_C], _C]: ...
mutable = define
@overload
@dataclass_transform(frozen_default=True, field_specifiers=(attrib, field))
def frozen(
maybe_cls: _C,
*,
these: dict[str, Any] | None = ...,
repr: bool = ...,
unsafe_hash: bool | None = ...,
hash: bool | None = ...,
init: bool = ...,
slots: bool = ...,
frozen: bool = ...,
weakref_slot: bool = ...,
str: bool = ...,
auto_attribs: bool = ...,
kw_only: bool = ...,
cache_hash: bool = ...,
auto_exc: bool = ...,
eq: bool | None = ...,
order: bool | None = ...,
auto_detect: bool = ...,
getstate_setstate: bool | None = ...,
on_setattr: _OnSetAttrArgType | None = ...,
field_transformer: _FieldTransformer | None = ...,
match_args: bool = ...,
) -> _C: ...
@overload
@dataclass_transform(frozen_default=True, field_specifiers=(attrib, field))
def frozen(
maybe_cls: None = ...,
*,
these: dict[str, Any] | None = ...,
repr: bool = ...,
unsafe_hash: bool | None = ...,
hash: bool | None = ...,
init: bool = ...,
slots: bool = ...,
frozen: bool = ...,
weakref_slot: bool = ...,
str: bool = ...,
auto_attribs: bool = ...,
kw_only: bool = ...,
cache_hash: bool = ...,
auto_exc: bool = ...,
eq: bool | None = ...,
order: bool | None = ...,
auto_detect: bool = ...,
getstate_setstate: bool | None = ...,
on_setattr: _OnSetAttrArgType | None = ...,
field_transformer: _FieldTransformer | None = ...,
match_args: bool = ...,
) -> Callable[[_C], _C]: ...

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@@ -0,0 +1,3 @@
# SPDX-License-Identifier: MIT
from attr.converters import * # noqa: F403

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@@ -0,0 +1,3 @@
# SPDX-License-Identifier: MIT
from attr.exceptions import * # noqa: F403

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@@ -0,0 +1,3 @@
# SPDX-License-Identifier: MIT
from attr.filters import * # noqa: F403

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@@ -0,0 +1,3 @@
# SPDX-License-Identifier: MIT
from attr.setters import * # noqa: F403

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@@ -0,0 +1,3 @@
# SPDX-License-Identifier: MIT
from attr.validators import * # noqa: F403

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@@ -0,0 +1,202 @@
Apache License
Version 2.0, January 2004
http://www.apache.org/licenses/
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@@ -0,0 +1,29 @@
Metadata-Version: 2.1
Name: aws-cdk.asset-node-proxy-agent-v6
Version: 2.1.0
Summary: @aws-cdk/asset-node-proxy-agent-v6
Home-page: https://github.com/cdklabs/awscdk-asset-node-proxy-agent#readme
Author: Amazon Web Services<aws-cdk-dev@amazon.com>
License: Apache-2.0
Project-URL: Source, https://github.com/aws/asset-node-proxy-agent-v6.git
Classifier: Intended Audience :: Developers
Classifier: Operating System :: OS Independent
Classifier: Programming Language :: JavaScript
Classifier: Programming Language :: Python :: 3 :: Only
Classifier: Programming Language :: Python :: 3.8
Classifier: Programming Language :: Python :: 3.9
Classifier: Programming Language :: Python :: 3.10
Classifier: Programming Language :: Python :: 3.11
Classifier: Typing :: Typed
Classifier: Development Status :: 5 - Production/Stable
Classifier: License :: OSI Approved
Requires-Python: ~=3.8
Description-Content-Type: text/markdown
License-File: LICENSE
License-File: NOTICE
Requires-Dist: jsii<2.0.0,>=1.103.1
Requires-Dist: publication>=0.0.3
Requires-Dist: typeguard<5.0.0,>=2.13.3
aws-cdk.asset-node-proxy-agent-v6
=================================

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@@ -0,0 +1 @@
Copyright Amazon.com, Inc. or its affiliates. All Rights Reserved.

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@@ -0,0 +1,10 @@
aws_cdk.asset_node_proxy_agent_v6-2.1.0.dist-info/INSTALLER,sha256=zuuue4knoyJ-UwPPXg8fezS7VCrXJQrAP7zeNuwvFQg,4
aws_cdk.asset_node_proxy_agent_v6-2.1.0.dist-info/LICENSE,sha256=z8d0m5b2O9McPEK1xHG_dWgUBT6EfBDz6wA0F7xSPTA,11358
aws_cdk.asset_node_proxy_agent_v6-2.1.0.dist-info/METADATA,sha256=VF6JxwBOAnBmN6cpud5ifeiXMnsr0ZpLBnNIoyQEOG0,1143
aws_cdk.asset_node_proxy_agent_v6-2.1.0.dist-info/NOTICE,sha256=1CkO1kwu3Q_OHYTj-d-yiBJA_lNN73a4zSntavaD4oc,67
aws_cdk.asset_node_proxy_agent_v6-2.1.0.dist-info/RECORD,,
aws_cdk.asset_node_proxy_agent_v6-2.1.0.dist-info/WHEEL,sha256=eOLhNAGa2EW3wWl_TU484h7q1UNgy0JXjjoqKoxAAQc,92
aws_cdk.asset_node_proxy_agent_v6-2.1.0.dist-info/top_level.txt,sha256=1TALAKbuUGsMSrfKWEf268lySCmcqSEO6cDYe_XlLHM,8
aws_cdk/asset_node_proxy_agent_v6/_jsii/__init__.py,sha256=Gt2MNH8kzInjVLQAvRnG-goB9yUxDWBW9FPJojZAs5k,1437
aws_cdk/asset_node_proxy_agent_v6/_jsii/__pycache__/__init__.cpython-312.pyc,,
aws_cdk/asset_node_proxy_agent_v6/_jsii/asset-node-proxy-agent-v6@2.1.0.jsii.tgz,sha256=8QhrtLpwvZlsJE2KK0YBOcf0CC8O0_9gmWC3ilOv818,1531103

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@@ -0,0 +1,5 @@
Wheel-Version: 1.0
Generator: bdist_wheel (0.44.0)
Root-Is-Purelib: true
Tag: py3-none-any

File diff suppressed because it is too large Load Diff

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@@ -0,0 +1,44 @@
from pkgutil import extend_path
__path__ = extend_path(__path__, __name__)
import abc
import builtins
import datetime
import enum
import typing
import jsii
import publication
import typing_extensions
import typeguard
from importlib.metadata import version as _metadata_package_version
TYPEGUARD_MAJOR_VERSION = int(_metadata_package_version('typeguard').split('.')[0])
def check_type(argname: str, value: object, expected_type: typing.Any) -> typing.Any:
if TYPEGUARD_MAJOR_VERSION <= 2:
return typeguard.check_type(argname=argname, value=value, expected_type=expected_type) # type:ignore
else:
if isinstance(value, jsii._reference_map.InterfaceDynamicProxy): # pyright: ignore [reportAttributeAccessIssue]
pass
else:
if TYPEGUARD_MAJOR_VERSION == 3:
typeguard.config.collection_check_strategy = typeguard.CollectionCheckStrategy.ALL_ITEMS # type:ignore
typeguard.check_type(value=value, expected_type=expected_type) # type:ignore
else:
typeguard.check_type(value=value, expected_type=expected_type, collection_check_strategy=typeguard.CollectionCheckStrategy.ALL_ITEMS) # type:ignore
import aws_cdk.asset_awscli_v1._jsii
import aws_cdk.asset_node_proxy_agent_v6._jsii
import aws_cdk.cloud_assembly_schema._jsii
import constructs._jsii
__jsii_assembly__ = jsii.JSIIAssembly.load(
"aws-cdk-lib", "2.202.0", __name__[0:-6], "aws-cdk-lib@2.202.0.jsii.tgz"
)
__all__ = [
"__jsii_assembly__",
]
publication.publish()

View File

@@ -0,0 +1,723 @@
r'''
# Alexa Skills Kit Construct Library
This module is part of the [AWS Cloud Development Kit](https://github.com/aws/aws-cdk) project.
```python
import aws_cdk.alexa_ask as alexa_ask
```
<!--BEGIN CFNONLY DISCLAIMER-->
There are no official hand-written ([L2](https://docs.aws.amazon.com/cdk/latest/guide/constructs.html#constructs_lib)) constructs for this service yet. Here are some suggestions on how to proceed:
* Search [Construct Hub for ASK construct libraries](https://constructs.dev/search?q=ask)
* Use the automatically generated [L1](https://docs.aws.amazon.com/cdk/latest/guide/constructs.html#constructs_l1_using) constructs, in the same way you would use [the CloudFormation Alexa::ASK resources](https://docs.aws.amazon.com/AWSCloudFormation/latest/UserGuide/Alexa_ASK.html) directly.
<!--BEGIN CFNONLY DISCLAIMER-->
There are no hand-written ([L2](https://docs.aws.amazon.com/cdk/latest/guide/constructs.html#constructs_lib)) constructs for this service yet.
However, you can still use the automatically generated [L1](https://docs.aws.amazon.com/cdk/latest/guide/constructs.html#constructs_l1_using) constructs, and use this service exactly as you would using CloudFormation directly.
For more information on the resources and properties available for this service, see the [CloudFormation documentation for Alexa::ASK](https://docs.aws.amazon.com/AWSCloudFormation/latest/UserGuide/Alexa_ASK.html).
(Read the [CDK Contributing Guide](https://github.com/aws/aws-cdk/blob/main/CONTRIBUTING.md) and submit an RFC if you are interested in contributing to this construct library.)
<!--END CFNONLY DISCLAIMER-->
'''
from pkgutil import extend_path
__path__ = extend_path(__path__, __name__)
import abc
import builtins
import datetime
import enum
import typing
import jsii
import publication
import typing_extensions
import typeguard
from importlib.metadata import version as _metadata_package_version
TYPEGUARD_MAJOR_VERSION = int(_metadata_package_version('typeguard').split('.')[0])
def check_type(argname: str, value: object, expected_type: typing.Any) -> typing.Any:
if TYPEGUARD_MAJOR_VERSION <= 2:
return typeguard.check_type(argname=argname, value=value, expected_type=expected_type) # type:ignore
else:
if isinstance(value, jsii._reference_map.InterfaceDynamicProxy): # pyright: ignore [reportAttributeAccessIssue]
pass
else:
if TYPEGUARD_MAJOR_VERSION == 3:
typeguard.config.collection_check_strategy = typeguard.CollectionCheckStrategy.ALL_ITEMS # type:ignore
typeguard.check_type(value=value, expected_type=expected_type) # type:ignore
else:
typeguard.check_type(value=value, expected_type=expected_type, collection_check_strategy=typeguard.CollectionCheckStrategy.ALL_ITEMS) # type:ignore
from .._jsii import *
import constructs as _constructs_77d1e7e8
from .. import (
CfnResource as _CfnResource_9df397a6,
IInspectable as _IInspectable_c2943556,
IResolvable as _IResolvable_da3f097b,
TreeInspector as _TreeInspector_488e0dd5,
)
@jsii.implements(_IInspectable_c2943556)
class CfnSkill(
_CfnResource_9df397a6,
metaclass=jsii.JSIIMeta,
jsii_type="aws-cdk-lib.alexa_ask.CfnSkill",
):
'''The ``Alexa::ASK::Skill`` resource creates an Alexa skill that enables customers to access new abilities.
For more information about developing a skill, see the .
:see: http://docs.aws.amazon.com/AWSCloudFormation/latest/UserGuide/aws-resource-ask-skill.html
:cloudformationResource: Alexa::ASK::Skill
:exampleMetadata: fixture=_generated
Example::
# The code below shows an example of how to instantiate this type.
# The values are placeholders you should change.
from aws_cdk import alexa_ask
# manifest: Any
cfn_skill = alexa_ask.CfnSkill(self, "MyCfnSkill",
authentication_configuration=alexa_ask.CfnSkill.AuthenticationConfigurationProperty(
client_id="clientId",
client_secret="clientSecret",
refresh_token="refreshToken"
),
skill_package=alexa_ask.CfnSkill.SkillPackageProperty(
s3_bucket="s3Bucket",
s3_key="s3Key",
# the properties below are optional
overrides=alexa_ask.CfnSkill.OverridesProperty(
manifest=manifest
),
s3_bucket_role="s3BucketRole",
s3_object_version="s3ObjectVersion"
),
vendor_id="vendorId"
)
'''
def __init__(
self,
scope: _constructs_77d1e7e8.Construct,
id: builtins.str,
*,
authentication_configuration: typing.Union[_IResolvable_da3f097b, typing.Union["CfnSkill.AuthenticationConfigurationProperty", typing.Dict[builtins.str, typing.Any]]],
skill_package: typing.Union[_IResolvable_da3f097b, typing.Union["CfnSkill.SkillPackageProperty", typing.Dict[builtins.str, typing.Any]]],
vendor_id: builtins.str,
) -> None:
'''
:param scope: Scope in which this resource is defined.
:param id: Construct identifier for this resource (unique in its scope).
:param authentication_configuration: Login with Amazon (LWA) configuration used to authenticate with the Alexa service. Only Login with Amazon clients created through the are supported. The client ID, client secret, and refresh token are required.
:param skill_package: Configuration for the skill package that contains the components of the Alexa skill. Skill packages are retrieved from an Amazon S3 bucket and key and used to create and update the skill. For more information about the skill package format, see the .
:param vendor_id: The vendor ID associated with the Amazon developer account that will host the skill. Details for retrieving the vendor ID are in . The provided LWA credentials must be linked to the developer account associated with this vendor ID.
'''
if __debug__:
type_hints = typing.get_type_hints(_typecheckingstub__0d78aeecda8ab7b4c5c33f0fcee213f02875f3e3b528db0fdd0278c4f3e29d0c)
check_type(argname="argument scope", value=scope, expected_type=type_hints["scope"])
check_type(argname="argument id", value=id, expected_type=type_hints["id"])
props = CfnSkillProps(
authentication_configuration=authentication_configuration,
skill_package=skill_package,
vendor_id=vendor_id,
)
jsii.create(self.__class__, self, [scope, id, props])
@jsii.member(jsii_name="inspect")
def inspect(self, inspector: _TreeInspector_488e0dd5) -> None:
'''Examines the CloudFormation resource and discloses attributes.
:param inspector: tree inspector to collect and process attributes.
'''
if __debug__:
type_hints = typing.get_type_hints(_typecheckingstub__d237b06ab57352cf7e8d1c4072d35efe097487a04851896ab60f8ca5d016dcf7)
check_type(argname="argument inspector", value=inspector, expected_type=type_hints["inspector"])
return typing.cast(None, jsii.invoke(self, "inspect", [inspector]))
@jsii.member(jsii_name="renderProperties")
def _render_properties(
self,
props: typing.Mapping[builtins.str, typing.Any],
) -> typing.Mapping[builtins.str, typing.Any]:
'''
:param props: -
'''
if __debug__:
type_hints = typing.get_type_hints(_typecheckingstub__e003e0dd9b27e4ebcf016a5753a786b7abc1d6e5c77e28c8c2afd4d9aa0b9e00)
check_type(argname="argument props", value=props, expected_type=type_hints["props"])
return typing.cast(typing.Mapping[builtins.str, typing.Any], jsii.invoke(self, "renderProperties", [props]))
@jsii.python.classproperty
@jsii.member(jsii_name="CFN_RESOURCE_TYPE_NAME")
def CFN_RESOURCE_TYPE_NAME(cls) -> builtins.str:
'''The CloudFormation resource type name for this resource class.'''
return typing.cast(builtins.str, jsii.sget(cls, "CFN_RESOURCE_TYPE_NAME"))
@builtins.property
@jsii.member(jsii_name="attrId")
def attr_id(self) -> builtins.str:
'''
:cloudformationAttribute: Id
'''
return typing.cast(builtins.str, jsii.get(self, "attrId"))
@builtins.property
@jsii.member(jsii_name="cfnProperties")
def _cfn_properties(self) -> typing.Mapping[builtins.str, typing.Any]:
return typing.cast(typing.Mapping[builtins.str, typing.Any], jsii.get(self, "cfnProperties"))
@builtins.property
@jsii.member(jsii_name="authenticationConfiguration")
def authentication_configuration(
self,
) -> typing.Union[_IResolvable_da3f097b, "CfnSkill.AuthenticationConfigurationProperty"]:
'''Login with Amazon (LWA) configuration used to authenticate with the Alexa service.'''
return typing.cast(typing.Union[_IResolvable_da3f097b, "CfnSkill.AuthenticationConfigurationProperty"], jsii.get(self, "authenticationConfiguration"))
@authentication_configuration.setter
def authentication_configuration(
self,
value: typing.Union[_IResolvable_da3f097b, "CfnSkill.AuthenticationConfigurationProperty"],
) -> None:
if __debug__:
type_hints = typing.get_type_hints(_typecheckingstub__7f79ad56de5a233709bfa180b3886229464b9d28a88416bdaabab40400468843)
check_type(argname="argument value", value=value, expected_type=type_hints["value"])
jsii.set(self, "authenticationConfiguration", value) # pyright: ignore[reportArgumentType]
@builtins.property
@jsii.member(jsii_name="skillPackage")
def skill_package(
self,
) -> typing.Union[_IResolvable_da3f097b, "CfnSkill.SkillPackageProperty"]:
'''Configuration for the skill package that contains the components of the Alexa skill.'''
return typing.cast(typing.Union[_IResolvable_da3f097b, "CfnSkill.SkillPackageProperty"], jsii.get(self, "skillPackage"))
@skill_package.setter
def skill_package(
self,
value: typing.Union[_IResolvable_da3f097b, "CfnSkill.SkillPackageProperty"],
) -> None:
if __debug__:
type_hints = typing.get_type_hints(_typecheckingstub__1160f84c06aa4769b57c3cf0e89867f1c310c0c73387afad6e0e174defac367a)
check_type(argname="argument value", value=value, expected_type=type_hints["value"])
jsii.set(self, "skillPackage", value) # pyright: ignore[reportArgumentType]
@builtins.property
@jsii.member(jsii_name="vendorId")
def vendor_id(self) -> builtins.str:
'''The vendor ID associated with the Amazon developer account that will host the skill.'''
return typing.cast(builtins.str, jsii.get(self, "vendorId"))
@vendor_id.setter
def vendor_id(self, value: builtins.str) -> None:
if __debug__:
type_hints = typing.get_type_hints(_typecheckingstub__1e19323a763e3e7ce004953363ef3f20809f72e8931c75312b88fc85064e5d44)
check_type(argname="argument value", value=value, expected_type=type_hints["value"])
jsii.set(self, "vendorId", value) # pyright: ignore[reportArgumentType]
@jsii.data_type(
jsii_type="aws-cdk-lib.alexa_ask.CfnSkill.AuthenticationConfigurationProperty",
jsii_struct_bases=[],
name_mapping={
"client_id": "clientId",
"client_secret": "clientSecret",
"refresh_token": "refreshToken",
},
)
class AuthenticationConfigurationProperty:
def __init__(
self,
*,
client_id: builtins.str,
client_secret: builtins.str,
refresh_token: builtins.str,
) -> None:
'''The ``AuthenticationConfiguration`` property type specifies the Login with Amazon (LWA) configuration used to authenticate with the Alexa service.
Only Login with Amazon security profiles created through the are supported for authentication. A client ID, client secret, and refresh token are required. You can generate a client ID and client secret by creating a new on the Amazon Developer Portal or you can retrieve them from an existing profile. You can then retrieve the refresh token using the Alexa Skills Kit CLI. For instructions, see in the .
``AuthenticationConfiguration`` is a property of the ``Alexa::ASK::Skill`` resource.
:param client_id: Client ID from Login with Amazon (LWA).
:param client_secret: Client secret from Login with Amazon (LWA).
:param refresh_token: Refresh token from Login with Amazon (LWA). This token is secret.
:see: http://docs.aws.amazon.com/AWSCloudFormation/latest/UserGuide/aws-properties-ask-skill-authenticationconfiguration.html
:exampleMetadata: fixture=_generated
Example::
# The code below shows an example of how to instantiate this type.
# The values are placeholders you should change.
from aws_cdk import alexa_ask
authentication_configuration_property = alexa_ask.CfnSkill.AuthenticationConfigurationProperty(
client_id="clientId",
client_secret="clientSecret",
refresh_token="refreshToken"
)
'''
if __debug__:
type_hints = typing.get_type_hints(_typecheckingstub__754dd5f6039927c2e90b090339b3fb0321a11d25eeaf62d4c24a24dc6d93e784)
check_type(argname="argument client_id", value=client_id, expected_type=type_hints["client_id"])
check_type(argname="argument client_secret", value=client_secret, expected_type=type_hints["client_secret"])
check_type(argname="argument refresh_token", value=refresh_token, expected_type=type_hints["refresh_token"])
self._values: typing.Dict[builtins.str, typing.Any] = {
"client_id": client_id,
"client_secret": client_secret,
"refresh_token": refresh_token,
}
@builtins.property
def client_id(self) -> builtins.str:
'''Client ID from Login with Amazon (LWA).
:see: http://docs.aws.amazon.com/AWSCloudFormation/latest/UserGuide/aws-properties-ask-skill-authenticationconfiguration.html#cfn-ask-skill-authenticationconfiguration-clientid
'''
result = self._values.get("client_id")
assert result is not None, "Required property 'client_id' is missing"
return typing.cast(builtins.str, result)
@builtins.property
def client_secret(self) -> builtins.str:
'''Client secret from Login with Amazon (LWA).
:see: http://docs.aws.amazon.com/AWSCloudFormation/latest/UserGuide/aws-properties-ask-skill-authenticationconfiguration.html#cfn-ask-skill-authenticationconfiguration-clientsecret
'''
result = self._values.get("client_secret")
assert result is not None, "Required property 'client_secret' is missing"
return typing.cast(builtins.str, result)
@builtins.property
def refresh_token(self) -> builtins.str:
'''Refresh token from Login with Amazon (LWA).
This token is secret.
:see: http://docs.aws.amazon.com/AWSCloudFormation/latest/UserGuide/aws-properties-ask-skill-authenticationconfiguration.html#cfn-ask-skill-authenticationconfiguration-refreshtoken
'''
result = self._values.get("refresh_token")
assert result is not None, "Required property 'refresh_token' is missing"
return typing.cast(builtins.str, result)
def __eq__(self, rhs: typing.Any) -> builtins.bool:
return isinstance(rhs, self.__class__) and rhs._values == self._values
def __ne__(self, rhs: typing.Any) -> builtins.bool:
return not (rhs == self)
def __repr__(self) -> str:
return "AuthenticationConfigurationProperty(%s)" % ", ".join(
k + "=" + repr(v) for k, v in self._values.items()
)
@jsii.data_type(
jsii_type="aws-cdk-lib.alexa_ask.CfnSkill.OverridesProperty",
jsii_struct_bases=[],
name_mapping={"manifest": "manifest"},
)
class OverridesProperty:
def __init__(self, *, manifest: typing.Any = None) -> None:
'''The ``Overrides`` property type provides overrides to the skill package to apply when creating or updating the skill.
Values provided here do not modify the contents of the original skill package. Currently, only overriding values inside of the skill manifest component of the package is supported.
``Overrides`` is a property of the ``Alexa::ASK::Skill SkillPackage`` property type.
:param manifest: Overrides to apply to the skill manifest inside of the skill package. The skill manifest contains metadata about the skill. For more information, see .
:see: http://docs.aws.amazon.com/AWSCloudFormation/latest/UserGuide/aws-properties-ask-skill-overrides.html
:exampleMetadata: fixture=_generated
Example::
# The code below shows an example of how to instantiate this type.
# The values are placeholders you should change.
from aws_cdk import alexa_ask
# manifest: Any
overrides_property = alexa_ask.CfnSkill.OverridesProperty(
manifest=manifest
)
'''
if __debug__:
type_hints = typing.get_type_hints(_typecheckingstub__3fab72aad4fe72a79ab52407ef75f2025944fa0bd45192ece25e9a3bf7f9107f)
check_type(argname="argument manifest", value=manifest, expected_type=type_hints["manifest"])
self._values: typing.Dict[builtins.str, typing.Any] = {}
if manifest is not None:
self._values["manifest"] = manifest
@builtins.property
def manifest(self) -> typing.Any:
'''Overrides to apply to the skill manifest inside of the skill package.
The skill manifest contains metadata about the skill. For more information, see .
:see: http://docs.aws.amazon.com/AWSCloudFormation/latest/UserGuide/aws-properties-ask-skill-overrides.html#cfn-ask-skill-overrides-manifest
'''
result = self._values.get("manifest")
return typing.cast(typing.Any, result)
def __eq__(self, rhs: typing.Any) -> builtins.bool:
return isinstance(rhs, self.__class__) and rhs._values == self._values
def __ne__(self, rhs: typing.Any) -> builtins.bool:
return not (rhs == self)
def __repr__(self) -> str:
return "OverridesProperty(%s)" % ", ".join(
k + "=" + repr(v) for k, v in self._values.items()
)
@jsii.data_type(
jsii_type="aws-cdk-lib.alexa_ask.CfnSkill.SkillPackageProperty",
jsii_struct_bases=[],
name_mapping={
"s3_bucket": "s3Bucket",
"s3_key": "s3Key",
"overrides": "overrides",
"s3_bucket_role": "s3BucketRole",
"s3_object_version": "s3ObjectVersion",
},
)
class SkillPackageProperty:
def __init__(
self,
*,
s3_bucket: builtins.str,
s3_key: builtins.str,
overrides: typing.Optional[typing.Union[_IResolvable_da3f097b, typing.Union["CfnSkill.OverridesProperty", typing.Dict[builtins.str, typing.Any]]]] = None,
s3_bucket_role: typing.Optional[builtins.str] = None,
s3_object_version: typing.Optional[builtins.str] = None,
) -> None:
'''The ``SkillPackage`` property type contains configuration details for the skill package that contains the components of the Alexa skill.
Skill packages are retrieved from an Amazon S3 bucket and key and used to create and update the skill. More details about the skill package format are located in the .
``SkillPackage`` is a property of the ``Alexa::ASK::Skill`` resource.
:param s3_bucket: The name of the Amazon S3 bucket where the .zip file that contains the skill package is stored.
:param s3_key: The location and name of the skill package .zip file.
:param overrides: Overrides to the skill package to apply when creating or updating the skill. Values provided here do not modify the contents of the original skill package. Currently, only overriding values inside of the skill manifest component of the package is supported.
:param s3_bucket_role: ARN of the IAM role that grants the Alexa service ( ``alexa-appkit.amazon.com`` ) permission to access the bucket and retrieve the skill package. This property is optional. If you do not provide it, the bucket must be publicly accessible or configured with a policy that allows this access. Otherwise, AWS CloudFormation cannot create the skill.
:param s3_object_version: If you have S3 versioning enabled, the version ID of the skill package.zip file.
:see: http://docs.aws.amazon.com/AWSCloudFormation/latest/UserGuide/aws-properties-ask-skill-skillpackage.html
:exampleMetadata: fixture=_generated
Example::
# The code below shows an example of how to instantiate this type.
# The values are placeholders you should change.
from aws_cdk import alexa_ask
# manifest: Any
skill_package_property = alexa_ask.CfnSkill.SkillPackageProperty(
s3_bucket="s3Bucket",
s3_key="s3Key",
# the properties below are optional
overrides=alexa_ask.CfnSkill.OverridesProperty(
manifest=manifest
),
s3_bucket_role="s3BucketRole",
s3_object_version="s3ObjectVersion"
)
'''
if __debug__:
type_hints = typing.get_type_hints(_typecheckingstub__9bd0d7fb4b090c6708f33e9e5a779b9bd5c8080853d2ec8486346a494e853b60)
check_type(argname="argument s3_bucket", value=s3_bucket, expected_type=type_hints["s3_bucket"])
check_type(argname="argument s3_key", value=s3_key, expected_type=type_hints["s3_key"])
check_type(argname="argument overrides", value=overrides, expected_type=type_hints["overrides"])
check_type(argname="argument s3_bucket_role", value=s3_bucket_role, expected_type=type_hints["s3_bucket_role"])
check_type(argname="argument s3_object_version", value=s3_object_version, expected_type=type_hints["s3_object_version"])
self._values: typing.Dict[builtins.str, typing.Any] = {
"s3_bucket": s3_bucket,
"s3_key": s3_key,
}
if overrides is not None:
self._values["overrides"] = overrides
if s3_bucket_role is not None:
self._values["s3_bucket_role"] = s3_bucket_role
if s3_object_version is not None:
self._values["s3_object_version"] = s3_object_version
@builtins.property
def s3_bucket(self) -> builtins.str:
'''The name of the Amazon S3 bucket where the .zip file that contains the skill package is stored.
:see: http://docs.aws.amazon.com/AWSCloudFormation/latest/UserGuide/aws-properties-ask-skill-skillpackage.html#cfn-ask-skill-skillpackage-s3bucket
'''
result = self._values.get("s3_bucket")
assert result is not None, "Required property 's3_bucket' is missing"
return typing.cast(builtins.str, result)
@builtins.property
def s3_key(self) -> builtins.str:
'''The location and name of the skill package .zip file.
:see: http://docs.aws.amazon.com/AWSCloudFormation/latest/UserGuide/aws-properties-ask-skill-skillpackage.html#cfn-ask-skill-skillpackage-s3key
'''
result = self._values.get("s3_key")
assert result is not None, "Required property 's3_key' is missing"
return typing.cast(builtins.str, result)
@builtins.property
def overrides(
self,
) -> typing.Optional[typing.Union[_IResolvable_da3f097b, "CfnSkill.OverridesProperty"]]:
'''Overrides to the skill package to apply when creating or updating the skill.
Values provided here do not modify the contents of the original skill package. Currently, only overriding values inside of the skill manifest component of the package is supported.
:see: http://docs.aws.amazon.com/AWSCloudFormation/latest/UserGuide/aws-properties-ask-skill-skillpackage.html#cfn-ask-skill-skillpackage-overrides
'''
result = self._values.get("overrides")
return typing.cast(typing.Optional[typing.Union[_IResolvable_da3f097b, "CfnSkill.OverridesProperty"]], result)
@builtins.property
def s3_bucket_role(self) -> typing.Optional[builtins.str]:
'''ARN of the IAM role that grants the Alexa service ( ``alexa-appkit.amazon.com`` ) permission to access the bucket and retrieve the skill package. This property is optional. If you do not provide it, the bucket must be publicly accessible or configured with a policy that allows this access. Otherwise, AWS CloudFormation cannot create the skill.
:see: http://docs.aws.amazon.com/AWSCloudFormation/latest/UserGuide/aws-properties-ask-skill-skillpackage.html#cfn-ask-skill-skillpackage-s3bucketrole
'''
result = self._values.get("s3_bucket_role")
return typing.cast(typing.Optional[builtins.str], result)
@builtins.property
def s3_object_version(self) -> typing.Optional[builtins.str]:
'''If you have S3 versioning enabled, the version ID of the skill package.zip file.
:see: http://docs.aws.amazon.com/AWSCloudFormation/latest/UserGuide/aws-properties-ask-skill-skillpackage.html#cfn-ask-skill-skillpackage-s3objectversion
'''
result = self._values.get("s3_object_version")
return typing.cast(typing.Optional[builtins.str], result)
def __eq__(self, rhs: typing.Any) -> builtins.bool:
return isinstance(rhs, self.__class__) and rhs._values == self._values
def __ne__(self, rhs: typing.Any) -> builtins.bool:
return not (rhs == self)
def __repr__(self) -> str:
return "SkillPackageProperty(%s)" % ", ".join(
k + "=" + repr(v) for k, v in self._values.items()
)
@jsii.data_type(
jsii_type="aws-cdk-lib.alexa_ask.CfnSkillProps",
jsii_struct_bases=[],
name_mapping={
"authentication_configuration": "authenticationConfiguration",
"skill_package": "skillPackage",
"vendor_id": "vendorId",
},
)
class CfnSkillProps:
def __init__(
self,
*,
authentication_configuration: typing.Union[_IResolvable_da3f097b, typing.Union[CfnSkill.AuthenticationConfigurationProperty, typing.Dict[builtins.str, typing.Any]]],
skill_package: typing.Union[_IResolvable_da3f097b, typing.Union[CfnSkill.SkillPackageProperty, typing.Dict[builtins.str, typing.Any]]],
vendor_id: builtins.str,
) -> None:
'''Properties for defining a ``CfnSkill``.
:param authentication_configuration: Login with Amazon (LWA) configuration used to authenticate with the Alexa service. Only Login with Amazon clients created through the are supported. The client ID, client secret, and refresh token are required.
:param skill_package: Configuration for the skill package that contains the components of the Alexa skill. Skill packages are retrieved from an Amazon S3 bucket and key and used to create and update the skill. For more information about the skill package format, see the .
:param vendor_id: The vendor ID associated with the Amazon developer account that will host the skill. Details for retrieving the vendor ID are in . The provided LWA credentials must be linked to the developer account associated with this vendor ID.
:see: http://docs.aws.amazon.com/AWSCloudFormation/latest/UserGuide/aws-resource-ask-skill.html
:exampleMetadata: fixture=_generated
Example::
# The code below shows an example of how to instantiate this type.
# The values are placeholders you should change.
from aws_cdk import alexa_ask
# manifest: Any
cfn_skill_props = alexa_ask.CfnSkillProps(
authentication_configuration=alexa_ask.CfnSkill.AuthenticationConfigurationProperty(
client_id="clientId",
client_secret="clientSecret",
refresh_token="refreshToken"
),
skill_package=alexa_ask.CfnSkill.SkillPackageProperty(
s3_bucket="s3Bucket",
s3_key="s3Key",
# the properties below are optional
overrides=alexa_ask.CfnSkill.OverridesProperty(
manifest=manifest
),
s3_bucket_role="s3BucketRole",
s3_object_version="s3ObjectVersion"
),
vendor_id="vendorId"
)
'''
if __debug__:
type_hints = typing.get_type_hints(_typecheckingstub__18a03c0ba6c20d17a037e17f3d48ad3d5175e42d1b4d42294067c2c25cdf6e08)
check_type(argname="argument authentication_configuration", value=authentication_configuration, expected_type=type_hints["authentication_configuration"])
check_type(argname="argument skill_package", value=skill_package, expected_type=type_hints["skill_package"])
check_type(argname="argument vendor_id", value=vendor_id, expected_type=type_hints["vendor_id"])
self._values: typing.Dict[builtins.str, typing.Any] = {
"authentication_configuration": authentication_configuration,
"skill_package": skill_package,
"vendor_id": vendor_id,
}
@builtins.property
def authentication_configuration(
self,
) -> typing.Union[_IResolvable_da3f097b, CfnSkill.AuthenticationConfigurationProperty]:
'''Login with Amazon (LWA) configuration used to authenticate with the Alexa service.
Only Login with Amazon clients created through the are supported. The client ID, client secret, and refresh token are required.
:see: http://docs.aws.amazon.com/AWSCloudFormation/latest/UserGuide/aws-resource-ask-skill.html#cfn-ask-skill-authenticationconfiguration
'''
result = self._values.get("authentication_configuration")
assert result is not None, "Required property 'authentication_configuration' is missing"
return typing.cast(typing.Union[_IResolvable_da3f097b, CfnSkill.AuthenticationConfigurationProperty], result)
@builtins.property
def skill_package(
self,
) -> typing.Union[_IResolvable_da3f097b, CfnSkill.SkillPackageProperty]:
'''Configuration for the skill package that contains the components of the Alexa skill.
Skill packages are retrieved from an Amazon S3 bucket and key and used to create and update the skill. For more information about the skill package format, see the .
:see: http://docs.aws.amazon.com/AWSCloudFormation/latest/UserGuide/aws-resource-ask-skill.html#cfn-ask-skill-skillpackage
'''
result = self._values.get("skill_package")
assert result is not None, "Required property 'skill_package' is missing"
return typing.cast(typing.Union[_IResolvable_da3f097b, CfnSkill.SkillPackageProperty], result)
@builtins.property
def vendor_id(self) -> builtins.str:
'''The vendor ID associated with the Amazon developer account that will host the skill.
Details for retrieving the vendor ID are in . The provided LWA credentials must be linked to the developer account associated with this vendor ID.
:see: http://docs.aws.amazon.com/AWSCloudFormation/latest/UserGuide/aws-resource-ask-skill.html#cfn-ask-skill-vendorid
'''
result = self._values.get("vendor_id")
assert result is not None, "Required property 'vendor_id' is missing"
return typing.cast(builtins.str, result)
def __eq__(self, rhs: typing.Any) -> builtins.bool:
return isinstance(rhs, self.__class__) and rhs._values == self._values
def __ne__(self, rhs: typing.Any) -> builtins.bool:
return not (rhs == self)
def __repr__(self) -> str:
return "CfnSkillProps(%s)" % ", ".join(
k + "=" + repr(v) for k, v in self._values.items()
)
__all__ = [
"CfnSkill",
"CfnSkillProps",
]
publication.publish()
def _typecheckingstub__0d78aeecda8ab7b4c5c33f0fcee213f02875f3e3b528db0fdd0278c4f3e29d0c(
scope: _constructs_77d1e7e8.Construct,
id: builtins.str,
*,
authentication_configuration: typing.Union[_IResolvable_da3f097b, typing.Union[CfnSkill.AuthenticationConfigurationProperty, typing.Dict[builtins.str, typing.Any]]],
skill_package: typing.Union[_IResolvable_da3f097b, typing.Union[CfnSkill.SkillPackageProperty, typing.Dict[builtins.str, typing.Any]]],
vendor_id: builtins.str,
) -> None:
"""Type checking stubs"""
pass
def _typecheckingstub__d237b06ab57352cf7e8d1c4072d35efe097487a04851896ab60f8ca5d016dcf7(
inspector: _TreeInspector_488e0dd5,
) -> None:
"""Type checking stubs"""
pass
def _typecheckingstub__e003e0dd9b27e4ebcf016a5753a786b7abc1d6e5c77e28c8c2afd4d9aa0b9e00(
props: typing.Mapping[builtins.str, typing.Any],
) -> None:
"""Type checking stubs"""
pass
def _typecheckingstub__7f79ad56de5a233709bfa180b3886229464b9d28a88416bdaabab40400468843(
value: typing.Union[_IResolvable_da3f097b, CfnSkill.AuthenticationConfigurationProperty],
) -> None:
"""Type checking stubs"""
pass
def _typecheckingstub__1160f84c06aa4769b57c3cf0e89867f1c310c0c73387afad6e0e174defac367a(
value: typing.Union[_IResolvable_da3f097b, CfnSkill.SkillPackageProperty],
) -> None:
"""Type checking stubs"""
pass
def _typecheckingstub__1e19323a763e3e7ce004953363ef3f20809f72e8931c75312b88fc85064e5d44(
value: builtins.str,
) -> None:
"""Type checking stubs"""
pass
def _typecheckingstub__754dd5f6039927c2e90b090339b3fb0321a11d25eeaf62d4c24a24dc6d93e784(
*,
client_id: builtins.str,
client_secret: builtins.str,
refresh_token: builtins.str,
) -> None:
"""Type checking stubs"""
pass
def _typecheckingstub__3fab72aad4fe72a79ab52407ef75f2025944fa0bd45192ece25e9a3bf7f9107f(
*,
manifest: typing.Any = None,
) -> None:
"""Type checking stubs"""
pass
def _typecheckingstub__9bd0d7fb4b090c6708f33e9e5a779b9bd5c8080853d2ec8486346a494e853b60(
*,
s3_bucket: builtins.str,
s3_key: builtins.str,
overrides: typing.Optional[typing.Union[_IResolvable_da3f097b, typing.Union[CfnSkill.OverridesProperty, typing.Dict[builtins.str, typing.Any]]]] = None,
s3_bucket_role: typing.Optional[builtins.str] = None,
s3_object_version: typing.Optional[builtins.str] = None,
) -> None:
"""Type checking stubs"""
pass
def _typecheckingstub__18a03c0ba6c20d17a037e17f3d48ad3d5175e42d1b4d42294067c2c25cdf6e08(
*,
authentication_configuration: typing.Union[_IResolvable_da3f097b, typing.Union[CfnSkill.AuthenticationConfigurationProperty, typing.Dict[builtins.str, typing.Any]]],
skill_package: typing.Union[_IResolvable_da3f097b, typing.Union[CfnSkill.SkillPackageProperty, typing.Dict[builtins.str, typing.Any]]],
vendor_id: builtins.str,
) -> None:
"""Type checking stubs"""
pass

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from pkgutil import extend_path
__path__ = extend_path(__path__, __name__)
import abc
import builtins
import datetime
import enum
import typing
import jsii
import publication
import typing_extensions
import typeguard
from importlib.metadata import version as _metadata_package_version
TYPEGUARD_MAJOR_VERSION = int(_metadata_package_version('typeguard').split('.')[0])
def check_type(argname: str, value: object, expected_type: typing.Any) -> typing.Any:
if TYPEGUARD_MAJOR_VERSION <= 2:
return typeguard.check_type(argname=argname, value=value, expected_type=expected_type) # type:ignore
else:
if isinstance(value, jsii._reference_map.InterfaceDynamicProxy): # pyright: ignore [reportAttributeAccessIssue]
pass
else:
if TYPEGUARD_MAJOR_VERSION == 3:
typeguard.config.collection_check_strategy = typeguard.CollectionCheckStrategy.ALL_ITEMS # type:ignore
typeguard.check_type(value=value, expected_type=expected_type) # type:ignore
else:
typeguard.check_type(value=value, expected_type=expected_type, collection_check_strategy=typeguard.CollectionCheckStrategy.ALL_ITEMS) # type:ignore
__jsii_assembly__ = jsii.JSIIAssembly.load(
"@aws-cdk/asset-awscli-v1",
"2.2.240",
__name__[0:-6],
"asset-awscli-v1@2.2.240.jsii.tgz",
)
__all__ = [
"__jsii_assembly__",
]
publication.publish()

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@@ -0,0 +1,42 @@
from pkgutil import extend_path
__path__ = extend_path(__path__, __name__)
import abc
import builtins
import datetime
import enum
import typing
import jsii
import publication
import typing_extensions
import typeguard
from importlib.metadata import version as _metadata_package_version
TYPEGUARD_MAJOR_VERSION = int(_metadata_package_version('typeguard').split('.')[0])
def check_type(argname: str, value: object, expected_type: typing.Any) -> typing.Any:
if TYPEGUARD_MAJOR_VERSION <= 2:
return typeguard.check_type(argname=argname, value=value, expected_type=expected_type) # type:ignore
else:
if isinstance(value, jsii._reference_map.InterfaceDynamicProxy): # pyright: ignore [reportAttributeAccessIssue]
pass
else:
if TYPEGUARD_MAJOR_VERSION == 3:
typeguard.config.collection_check_strategy = typeguard.CollectionCheckStrategy.ALL_ITEMS # type:ignore
typeguard.check_type(value=value, expected_type=expected_type) # type:ignore
else:
typeguard.check_type(value=value, expected_type=expected_type, collection_check_strategy=typeguard.CollectionCheckStrategy.ALL_ITEMS) # type:ignore
__jsii_assembly__ = jsii.JSIIAssembly.load(
"@aws-cdk/asset-node-proxy-agent-v6",
"2.1.0",
__name__[0:-6],
"asset-node-proxy-agent-v6@2.1.0.jsii.tgz",
)
__all__ = [
"__jsii_assembly__",
]
publication.publish()

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