mirror of
https://github.com/wneessen/apg-go.git
synced 2024-11-14 09:52:55 +01:00
Winni Neessen
4a6b9b325f
The version number has been corrected to 1.1.0 from 1.0.1. This change was made in both the README.md file and the apg.go file. This update reflects the new algorithm for binary secrets introduction in version 1.1.0 instead of version 1.0.1.
434 lines
20 KiB
Markdown
434 lines
20 KiB
Markdown
<!--
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SPDX-FileCopyrightText: 2021-2024 Winni Neessen <wn@neessen.dev>
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SPDX-License-Identifier: CC0-1.0
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-->
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# A "Automated Password Generator"-clone
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[![Go Reference](https://pkg.go.dev/badge/github.com/wneessen/apg-go.svg)](https://pkg.go.dev/github.com/wneessen/apg-go)
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[![Go Report Card](https://goreportcard.com/badge/github.com/wneessen/apg-go)](https://goreportcard.com/report/github.com/wneessen/apg-go)
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[![codecov](https://codecov.io/gh/wneessen/apg-go/graph/badge.svg?token=UA908LVYSL)](https://codecov.io/gh/wneessen/apg-go)
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[![#apg-go on Discord](https://img.shields.io/badge/Discord-%23apg%E2%80%93go-blue.svg)](https://discord.gg/ysQXkaccXk)
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[![REUSE status](https://api.reuse.software/badge/github.com/wneessen/apg-go)](https://api.reuse.software/info/github.com/wneessen/apg-go)
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<a href="https://ko-fi.com/D1D24V9IX"><img src="https://uploads-ssl.webflow.com/5c14e387dab576fe667689cf/5cbed8a4ae2b88347c06c923_BuyMeACoffee_blue.png" height="20" alt="buy ma a coffee"></a>
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_apg-go_ is a simple APG-like password generator written in Go. It tries to replicate the
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functionality of the
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"[Automated Password Generator](https://web.archive.org/web/20130313042424/http://www.adel.nursat.kz:80/apg)",
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which hasn't been maintained since 2003. Since more and more Unix distributions are abandoning the tool, I was
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looking for an alternative. FreeBSD for example recommends "security/makepasswd", which is written in Perl
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but requires a lot of dependency packages and doesn't offer the feature-set/flexibility of APG.
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Since FIPS-181 (pronounceable passwords) has been withdrawn in 2015, apg-go does not follow this standard. Instead,
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it implements the [Koremutake Syllables System](https://shorl.com/koremutake.php) in its pronounceable password mode.
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## Examples
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This section provides some examples on how to use apg-go for common password generation tasks.
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### Login password for a website
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```shell
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$ apg -C -f 20 -n 1
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Zq#lIY?=?J@4_\X@\xtf
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```
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**Note:** Nowadays 20 random characters are still considered secure for passwords. You might want to adjust
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the `-f` parameter if you require a longer password.
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### PIN generation
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```shell
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$ apg -M lusN -f 6 -n 1
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952170
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```
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**Note:** A code example on how to programatically build a PIN generator with apg-go, can be found
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here: [pin-generator](example-code/pin-generator).
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### Phone verification phrase (pronounceable)
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```shell
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$ apg -a 0 -m 15 -x 15 -t -n 1
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vEbErlaFryaNgyex (vE-bEr-la-Fry-aN-gy-ex)
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```
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We generated a 15-character long pronounceable phrase with syllables output, for easy
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use in e. g. a phone verification process.
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### Cryptographic key for encryption
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```shell
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$ apg -a 3 -f 32 -bh
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```
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We generated a 32 bytes/256 bits long fully binary secret that can be used i. e. as
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encryption key for a AES-256 symmetric encryption. The output is represented in
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hexadecimal format.
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## Installation
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### Docker
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There is a ready-to-use Docker image hosted on Github.
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* Download the image:
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```shell
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$ docker pull ghcr.io/wneessen/apg-go:main
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```
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* Run the image:
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```shell
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$ docker run ghcr.io/wneessen/apg-go:main
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```
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### Binary releases/Packages
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On the [Github release page](https://github.com/wneessen/apg-go/releases) you will always find pre-build binaries
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for all supported OS and architectures. You will also find pre-built packages for the most common Linux distributions.
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Each file is digitally signed via GPG. After downloading the corresponding file, make sure that the file is verified
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with the GPG signature. The public GPG key is:
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["Winni Neessen" (Software signing key) <wn@neessen.dev>](https://keys.openpgp.org/vks/v1/by-fingerprint/10B5700F5ECCB06532CEC873C3D38948DA536E89)
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#### FreeBSD
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apg-go can be found as `/security/apg` in the [FreeBSD ports](https://cgit.freebsd.org/ports/tree/security/apg)
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tree.
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#### Arch Linux
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Find apg-go in [Arch Linux AUR](https://aur.archlinux.org/packages/apg-go/). Alternatively use the pre-build `zst`-package of the [latest release](https://github.com/wneessen/apg-go/releases) in
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this git repository
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#### Debian/Redhat/Alpine
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Pre-build packages in `.deb`, `.rpm` and `.apk` format can be found on [release page](https://github.com/wneessen/apg-go/releases) in
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this git repository
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#### Binary installation on Linux/BSD/MacOS
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* Download release
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```sh
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$ curl -LO https://github.com/wneessen/apg-go/releases/download/v<version>/apg-go_<version>_<os>_<architecture>.tar.gz
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$ curl -LO https://github.com/wneessen/apg-go/releases/download/v<version>/apg-go_<version>_<os>_<architecture>.tar.gz.sig
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```
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* Import the GPG signing key
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```sh
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$ gpg --keyserver keys.openpgp.org --recv-keys C3D38948DA536E89
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gpg: key C3D38948DA536E89: public key "Winni Neessen (Software signing key) <wn@neessen.dev>" imported
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gpg: Total number processed: 1
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gpg: imported: 1
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```
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* Verify the signature
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```sh
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$ gpg --verify apg-go_<version>_<os>_<architechture>.tar.gz.sig apg-go_<version>_<os>_<architecture>.tar.gz
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gpg: Signature made Thu Mar 14 11:27:43 2024 CET
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gpg: using EDDSA key 10B5700F5ECCB06532CEC873C3D38948DA536E89
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gpg: issuer "wn@neessen.dev"
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gpg: Good signature from "Winni Neessen (Software signing key) <wn@neessen.dev>" [unknown]
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Primary key fingerprint: 10B5 700F 5ECC B065 32CE C873 C3D3 8948 DA53 6E89
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```
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**Make sure the signature of the downloaded file verifies as "good"**
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* Extract archive
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```sh
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$ tar xzf apg-<version>_<os>_<architecture>.tar.gz
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```
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* Execute
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```sh
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$ ./apg -v
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apg-go // A "Automated Password Generator"-clone v1.0.0
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OS: <version> // Arch: <architecture>
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(C) 2021-2024 by Winni Neessen
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```
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#### Windows
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* Download release
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```PowerShell
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PS> Invoke-RestMethod -Uri https://github.com/wneessen/apg-go/releases/download/v<version>/apg-go_<version>_windows_<architecture>.zip -OutFile apg-<version>-windows-<architecure>.zip
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PS> Invoke-RestMethod -Uri https://github.com/wneessen/apg-go/releases/download/v<version>/apg-go_<version>_windows_<architecture>.zip.sig -OutFile apg-<version>-windows-<architecure>.zip.sig
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```
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* Import the GPG signing key
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```PowerShell
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PS> gpg --keyserver keys.openpgp.org --recv-keys C3D38948DA536E89
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gpg: key C3D38948DA536E89: public key "Winni Neessen (Software signing key) <wn@neessen.dev>" imported
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gpg: Total number processed: 1
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gpg: imported: 1
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```
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* Verify the signature
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```PowerShell
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PS> gpg --verify apg-go_<version>_<os>_<architechture>.tar.gz.sig apg-go_<version>_<os>_<architecture>.tar.gz
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gpg: Signature made Thu Mar 14 11:27:43 2024 CET
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gpg: using EDDSA key 10B5700F5ECCB06532CEC873C3D38948DA536E89
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gpg: issuer "wn@neessen.dev"
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gpg: Good signature from "Winni Neessen (Software signing key) <wn@neessen.dev>" [unknown]
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Primary key fingerprint: 10B5 700F 5ECC B065 32CE C873 C3D3 8948 DA53 6E89
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```
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**Make sure the signature of the downloaded file verifies as "good"**
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* Extract archive
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```PowerShell
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PS> Expand-Archive -LiteralPath apg-<version>-windows-<architecture>.zip
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```
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* Execute
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```PowerShell
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PS> apg.exe
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```
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### Sources
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* Download sources
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```shell
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$ curl -LO https://github.com/wneessen/apg-go/archive/refs/tags/v<version>.tar.gz
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```
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* Extract source
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```shell
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$ tar xzf v<version>.tar.gz
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```
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* Download dependencies
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```shell
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$ cd apg-go-<version>
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$ go mod tidy
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$ go mod download
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$ go mod verify
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```
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* Build binary
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```shell
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$ go build -o apg github.com/wneessen/apg-go/cmd/apg
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```
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* Execute the brand new binary
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```shell
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$ ./apg
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```
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### Systemwide installation
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It is recommed to install apg in a directory of your ```$PATH``` environment. To do so run:
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(In this example we use ```/usr/local/bin``` as system-wide binary path. YMMV)
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```sh
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$ sudo cp apg /usr/local/bin/apg
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```
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## Programmatic interface
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Since v1.0.0 the CLI and the main package functionality have been separated from each other, which makes
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it easier to use the `apg-go` package in other Go code as well. This way you can make of the password
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generation in your own code without having to rely on the actual apg-go binary.
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A code example on how to use the package can be found in the [example-code](example-code) directory.
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## Usage examples
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### Default behaviour
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By default apg-go will generate 6 passwords, with a minimum length of 12 characters and a
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maxiumum length of 20 characters. The generated password will use a character set constructed
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from lower case, upper case and numeric characters.
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```shell
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$ ./apg-go
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R8rCC8bw5NvJmTUK2g
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cHB9qogTbfdzFgnH
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hoHfpWAHHSNa4Q
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QyjscIsZkQGh
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904YqsU5SnoqLo2w
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utdFKXdeiXFzM
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```
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### Modifying the character sets
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#### Old style
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Let's assume you want to generate a single password, constructed out of upper case, numeric
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and special characters. Since lower case is part of the default set, you would need to disable them
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by setting the `-L` parameter. In addition you would set the `-S` parameter to enable special
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characters. Finally the parameter `-n 1` is needed to keep apg-go from generating more than one
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password:
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```shell
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$ ./apg-go -n 1 -L -S
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XY7>}H@5U40&_A1*9I$
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```
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#### New/modern style
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Since the old style switches can be kind of confusing, it is recommended to use the "new style"
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parameters instead. The new style is all combined in the `-M` parameter. Using the upper case
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version of a parameter argument enables a feature, while the lower case version disabled it. The
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previous example could be represented like this in new style:
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```shell
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$ ./apg-go -n 1 -M lUSN
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$</K?*|M)%8\U$5JA5~
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```
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#### Human readability
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Generated passwords can sometimes be a bit hard to read for humans, especially when ambiguous
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characters are part of the password. Some characters in the ASCII character set look similar to
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each other. In example it can be hard to differentiate an upper case I from a lower case l.
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Same applies to the number zero (0) and the upper case O. To not run into issues with human
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readability, you can set the `-H` parameter to toggle on the "human readable" feature. When the
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option is set, apg-go will avoid using any of the typical ambiguous characters in the generated
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passwords.
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```shell
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$ ./apg-go -n 1 -M LUSN -H
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YpranThY3b6b5%\6ARx
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```
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#### Character exclusion
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Let's assume, that for whatever reason, your generated password can never include a colon (:) sign. For
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this specific case, you can use the `-E` parameter to specify a list of characters that are to be excluded
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from the password generation character set:
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```shell
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$ ./apg-go -n 1 -M lUSN -H -E :
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~B2\%E_|\VV|/5C7EF=
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```
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#### Complex passwords
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If you want to generate complex passwords, there is a shortcut for this as well. By setting the `-C`
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parameter, apg-go will automatically default to the most secure settings. The complex parameter
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basically implies that the password will use all available characters (lower case, upper case,
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numeric and special) and will make sure that human readability is disabled.
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```shell
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$ ./apg-go -n 1 -C
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{q6cvz9le5_fo"X7
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```
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### Password length
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By default, apg-go will generate a password with a random length between 12 and 20 characters. If you
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want to be more specific, you can use the `-m` and `-x` parameters to override the defaults. Let's
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assume you want a single complex password with a length of exactly 32 characters you can do so by
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running:
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```shell
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$ ./apg-go -n 1 -C -m 32 -x 32
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5lc&HBvx=!EUY*;'/t&>B|~sudhtyDBu
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```
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Alternatively, since v1.0.0 apg-go has the new `-f` flag, which allows to request a fixed length
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password. Instead of using `-m` and `-x` you can just use `-f 32` to get a 32 character long password:
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```shell
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$ ./apg -n 1 -C -f 32
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O"Q\d0zT'@(1f~%_56O*!q[!9:z[~\A*
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```
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### Password spelling
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If you need to read out a password, it can be helpful to know the corresponding word for that character in
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the phonetic alphabet. By setting the `-l` parameter, agp-go will provide you with the phonetic spelling
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(english language) of your newly created password:
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```shell
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$ ./apg-go -n 1 -M LUSN -H -E : -l
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fUTDKeFsU+zn3r= (foxtrot/Uniform/Tango/Delta/Kilo/echo/Foxtrot/sierra/Uniform/PLUS_SIGN/zulu/november/THREE/romeo/EQUAL_SIGN)
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```
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### Pronouncable passwords
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Since v0.4.0 apg-go supports pronounceable passwords, anologous to the original c-apg using the `-a 0`
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flag. The original c-apg implemented FIPS-181, which was withdrawn in 2015 for generating pronounceable
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passwords. Since the standard is not recommended anymore, `apg-go` instead make use of the
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[Koremutake Syllables System](https://shorl.com/koremutake.php). Similar to the original apg, `agp-go`
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will automatically randomly add special characters and number (from the human-readable pool) to each
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generated pronounceable password. Additionally it will perform a "coinflip" for each Koremutake syllable
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and decided if it should switch the case of one of the characters to an upper-case character.
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Using the `-t` parameter, `apg-go` will display a spelled out version of the pronounceable password, where
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each syllable or number/special character is seperated with a "-" (dash) and if the syllable is not a
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Koremutake syllable the character will be spelled out the same was as with activated `-l` in the
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non-pronounceable password mode (`-a 1`).
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**Note on password length**: The `-m` and `-x` parameters will work in prouncable password mode, but
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please keep in mind, that due to the nature how syllables work, your generated password might exceed
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the desired length by one complete syllable (which can be up to 3 characters long).
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**Security consideration:** Please keep in mind, that pronounceable passwords are less secure compared to truly
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randomly created passwords, due to the nature how syllables work. As a rule of thumb, it is recommended
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to multiply the length of your generated pronounceable passwords by at least 1.5 times, compared to truly
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randomly generated passwords. It might also be helpful to run the pronoucable password mode with enabled
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"[HIBP](#have-i-been-pwned)" flag, so that each generated password is automatically checked against "Have I Been Pwned"
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database.
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```shell
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$ ./apg-go -a 0 -n 1
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KebrutinernMy
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$ ./apg-go -a 0 -n 1 -m 15 -x 15 -t
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pEnbocydrageT*En (pEn-bo-cy-dra-geT-ASTERISK-En)
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```
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### Coinflip mode
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Sometimes you just want to quickly perform a simple, but random coinflip. Since v1.0.0 apg-go has a
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coinflip mode, which will return either "Heads" or "Tails". To use coinflip mode, use the `-a 2` argument:
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```shell
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$ ./apg -n 10 -a 2
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Tails
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Tails
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Heads
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Heads
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Tails
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Tails
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Tails
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Tails
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Heads
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Heads
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```
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### Binary mode
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Since v1.1.0 apg-go has a new algorithm for binary secrets. This is a very basic mode that will ignore
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most of the available options, as it will only generate binary secrets with full 256 bits of randomness.
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The only available options for this mode are: `-f` to set the length of the returned secret in bytes,
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`-bh` to tell apg-go to output the generated secret in hexadecial representation and `-bn` to instruct
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apg-go to return a newline after the generated secret. Any other option available in the other modes
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will be ignored.
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This mode can be useful for example if you need to generate a AES-256 encryption key. Since 32 bytes is
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the default length for the secret generation in this mode, you can simply generate a secret key with
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the following command:
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```shell
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$ apg -a 3 -bh
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a1cdab8db365af3d70828b1fe43b7896190c157ad3f1ae2a0a1d52ec1628c6b5
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```
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*For ease for readability we used the `-bh` flag, to instruct apg-go to output the secret in its
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hexadecimal representation*
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### Minimum required characters
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Even though in apg-go you can select what kind of characters are used for the password generation, it is
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not guaranteed, that if you request a password with a numeric value, that the generated password will
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actually have a numeric value. Since v1.0.0 apg-go has a new set of arguments, that let's you define
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a minimum amount of characters of a specific character class to be included in the generated password.
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This can be requested with the `-mL`, `-mN`, `-mS` and `-mU` arguments. Each stands for the corresponding
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character class. If one of the arguments is give, apg-go will generate passwords until the requested amount
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of characters of the corresponding class is given.
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**Note on minimum characters**: Please keep in mind, that due to the way the "minimum amount" feature works,
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the calculation time for passwords can increase and if the amount is set too high, it can result in apg-go
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never being able to finish the job.
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Example:
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```shell
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$ ./apg -n 10 -a 1 -M NLUs -f 20 -mN 3
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kqFG935E280LvTFUbJ4M
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RVBJAI5tJ6hy6oWrNfXG
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uy1IWBEoOQFyG66VrLqu
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T5k9oKieImvJ9hxePfHt
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0TTpGzMUje6mU7IXaSII
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gvDjPmlj8J6glR0iy0h4
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C5OP3Ph7bx173v0gRNsn
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SEuP7I3en6ai9OuHvNSs
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yira1uPQ8qmo5OKUM4Er
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bu0nzhjoKn8Uiy3H2RjD
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```
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### Have I Been Pwned
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Even though, the passwords that apg-go generated for you, are secure, there is a minimal chance, that
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someone on the planet used exactly the same password before and that this person was part of an
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internet leak or hack, which exposed the password to the public. Such passwords are not considered
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secure anymore as they usually land on public available password lists, that are used by crackers.
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To be on the safe side, you can use the `-p` parameter, to enable a HIBP check. When the feature is
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enabled, apg-go will check the HIBP database at https://haveibeenpwned.com if that password has been
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leaked before and provide you with a warning if that is the case.
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Please be aware, that this is a live check against the HIBP API, which not only requires internet
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connectivity, but also might take between 500ms to 1s to complete. When you generating a bigger list
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of password `-n 100`, the process could take much longer than without the `-p` feature enabled.
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## CLI parameters
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_apg-go_ replicates most of the parameters of the original c-apg. Some parameters are different though:
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- `-a <algorithm>`: Choose password generation algorithm (Default: 1)
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- `0`: Pronouncable password generation (Koremutake syllables)
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- `1`: Random password generation according to password modes/flags
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- `2`: Coinflip (returns heads or tails)
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- `3`: Binary mode (returns a secret with 256 bits of randomness)
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- `-bh`: When set, will print the generated secret in its hex representation (Default: off)
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- `-bn`: When set, will return a new line character after the generated secret (Default: off)
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- `-m <length>`: The minimum length of the password to be generated (Default: 12)
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- `-x <length>`: The maximum length of the password to be generated (Default: 20)
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- `-f <length>`: Fixed length of the password to be generated (Ignores -m and -x)
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- `-n <number of passwords>`: The amount of passwords to be generated (Default: 6)
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- `-E <list of characters>`: Do not use the specified characters in generated passwords
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- `-M <[LUNSHClunshc]>`: New style password parameters (upper-case enables, lower-case disables)
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- `-mL <number>`: Minimum amount of lower-case characters (implies -L)
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- `-mN <number>`: Minimum amount of numeric characters (implies -N)
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- `-mS <number>`: Minimum amount of special characters (implies -S)
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- `-mU <number>`: Minimum amount of upper-case characters (implies -U)
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- `-L`: Use lower-case characters in passwords (Default: on)
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- `-U`: Use upper-case characters in passwords (Default: on)
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- `-N`: Use numeric characters in passwords (Default: on)
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- `-S`: Use special characters in passwords (Default: off)
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- `-H`: Avoid ambiguous characters in passwords (i. e.: 1, l, I, o, O, 0) (Default: off)
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- `-C`: Generate complex passwords (implies -L -U -N -S and disables -H) (Default: off)
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- `-l`: Spell generated passwords in random password mode (Default: off)
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- `-t`: Spell generated passwords in pronounceable password mode (Default: off)
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- `-p`: Check the HIBP database if the generated passwords was found in a leak before (Default: off) // *this feature requires internet connectivity*
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- `-h`: Show a CLI help text
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- `-v`: Show the version number
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## Contributors
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Thanks to the following people for contributing to the apg-go codebase:
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* [Romain Tartière](https://github.com/smortex)
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* [Abraham Ingersoll](https://github.com/aberoham)
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* [Vinícius Zavam](https://github.com/egypcio) (Maintaining the FreeBSD port)
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