mirror of
https://github.com/wneessen/apg-go.git
synced 2024-11-14 01:42:55 +01:00
Winni Neessen
acadccc84a
This commit updates the password generator to now include a binary mode. This mode produces a 256 bits long fully binary secret which can be used for AES-256 encryption. New flags `-bh` (print hex representation) and `-bn` (new line after secret) have been added for this mode. The version has also been updated to 1.0.1 recognizing this new addition.
257 lines
10 KiB
Go
257 lines
10 KiB
Go
// SPDX-FileCopyrightText: 2021-2024 Winni Neessen <wn@neessen.dev>
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//
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// SPDX-License-Identifier: MIT
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// Package main is the APG command line client that makes use of the apg-go library
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package main
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import (
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"flag"
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"fmt"
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"os"
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"runtime"
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"github.com/wneessen/apg-go"
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)
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// MinimumAmountTooHigh is an error message displayed when a minimum amount of
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// parameter has been set to a too high value
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const MinimumAmountTooHigh = "WARNING: You have selected a minimum amount of characters that is bigger\n" +
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"than 50% of the minimum password length to be generated. This can lead\n" +
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"to extraordinary calculation times resulting in apg-go never finishing\n" +
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"the job. Please consider lowering the value.\n\n"
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func main() {
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config := apg.NewConfig()
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// Configure and parse the CLI flags
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// See usage() for flag details
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var algorithm int
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var modeString string
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var complexPass, humanReadable, lowerCase, numeric, special, showVer, upperCase bool
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flag.IntVar(&algorithm, "a", 1, "")
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flag.BoolVar(&config.BinaryHexMode, "bh", false, "")
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flag.BoolVar(&config.BinaryNewline, "bn", false, "")
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flag.BoolVar(&complexPass, "C", false, "")
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flag.StringVar(&config.ExcludeChars, "E", "", "")
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flag.Int64Var(&config.FixedLength, "f", 0, "")
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flag.BoolVar(&humanReadable, "H", false, "")
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flag.BoolVar(&config.SpellPassword, "l", false, "")
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flag.BoolVar(&lowerCase, "L", false, "")
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flag.Int64Var(&config.MinLength, "m", config.MinLength, "")
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flag.Int64Var(&config.MinLowerCase, "mL", config.MinLowerCase, "")
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flag.Int64Var(&config.MinNumeric, "mN", config.MinNumeric, "")
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flag.Int64Var(&config.MinSpecial, "mS", config.MinSpecial, "")
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flag.Int64Var(&config.MinUpperCase, "mU", config.MinUpperCase, "")
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flag.Int64Var(&config.NumberPass, "n", config.NumberPass, "")
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flag.StringVar(&modeString, "M", "", "")
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flag.BoolVar(&numeric, "N", false, "")
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flag.BoolVar(&config.CheckHIBP, "p", false, "")
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flag.BoolVar(&special, "S", false, "")
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flag.BoolVar(&config.SpellPronounceable, "t", false, "")
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flag.BoolVar(&upperCase, "U", false, "")
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flag.BoolVar(&showVer, "v", false, "")
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flag.Int64Var(&config.MaxLength, "x", config.MaxLength, "")
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flag.Usage = usage
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flag.Parse()
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// Show version and exit
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if showVer {
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_, _ = os.Stderr.WriteString(`apg-go // A "Automated Password Generator"-clone ` +
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`v` + apg.VERSION + "\n")
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_, _ = os.Stderr.WriteString("OS: " + runtime.GOOS + " // Arch: " +
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runtime.GOARCH + " \n")
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_, _ = os.Stderr.WriteString("(C) 2021-2024 by Winni Neessen\n")
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os.Exit(0)
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}
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// Old style character modes
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configOldStyle(config, humanReadable, lowerCase, upperCase, numeric,
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special, complexPass)
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// New style character modes (has higher priority than the old style modes)
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if modeString != "" {
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config.Mode = apg.ModesFromFlags(modeString)
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}
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// For the "minimum amount of" modes we need to imply at the type
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// of character mode is set
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configMinRequirement(config)
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// Check if algorithm is supported
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config.Algorithm = apg.IntToAlgo(algorithm)
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if config.Algorithm == apg.AlgoUnsupported {
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_, _ = fmt.Fprintf(os.Stderr, "unsupported algorithm value: %d\n", algorithm)
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os.Exit(1)
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}
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// Generate the password based on the given flags and print it to stdout
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generate(config)
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}
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// configMinRequirement configures the "minimum amount" feature
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func configMinRequirement(config *apg.Config) {
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if config.MinLowerCase > 0 {
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if float64(config.MinLength)/2 < float64(config.MinNumeric) {
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_, _ = os.Stderr.WriteString(MinimumAmountTooHigh)
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}
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config.Mode = apg.MaskSetMode(config.Mode, apg.ModeLowerCase)
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}
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if config.MinNumeric > 0 {
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if float64(config.MinLength)/2 < float64(config.MinLowerCase) {
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_, _ = os.Stderr.WriteString(MinimumAmountTooHigh)
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}
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config.Mode = apg.MaskSetMode(config.Mode, apg.ModeNumeric)
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}
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if config.MinSpecial > 0 {
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if float64(config.MinLength)/2 < float64(config.MinSpecial) {
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_, _ = os.Stderr.WriteString(MinimumAmountTooHigh)
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}
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config.Mode = apg.MaskSetMode(config.Mode, apg.ModeSpecial)
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}
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if config.MinUpperCase > 0 {
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if float64(config.MinLength)/2 < float64(config.MinUpperCase) {
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_, _ = os.Stderr.WriteString(MinimumAmountTooHigh)
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}
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config.Mode = apg.MaskSetMode(config.Mode, apg.ModeUpperCase)
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}
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}
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// configOldStyle configures the old style character modes
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func configOldStyle(config *apg.Config, humanReadable, lowerCase, upperCase,
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numeric, special, complexPass bool,
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) {
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if humanReadable {
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config.Mode = apg.MaskToggleMode(config.Mode, apg.ModeHumanReadable)
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}
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if lowerCase {
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config.Mode = apg.MaskToggleMode(config.Mode, apg.ModeLowerCase)
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}
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if upperCase {
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config.Mode = apg.MaskToggleMode(config.Mode, apg.ModeUpperCase)
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}
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if numeric {
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config.Mode = apg.MaskToggleMode(config.Mode, apg.ModeNumeric)
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}
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if special {
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config.Mode = apg.MaskToggleMode(config.Mode, apg.ModeSpecial)
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}
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if complexPass {
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config.Mode = apg.MaskSetMode(config.Mode, apg.ModeLowerCase|apg.ModeNumeric|
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apg.ModeSpecial|apg.ModeUpperCase)
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config.Mode = apg.MaskClearMode(config.Mode, apg.ModeHumanReadable)
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}
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}
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func generate(config *apg.Config) {
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generator := apg.New(config)
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// In binary mode we only generate a single secret
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if config.Algorithm == apg.AlgoBinary {
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password, err := generator.Generate()
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if err != nil {
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_, _ = fmt.Fprintf(os.Stderr, "failed to generate password: %s\n", err)
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os.Exit(1)
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}
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if config.BinaryNewline {
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fmt.Println(password)
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return
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}
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fmt.Print(password)
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return
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}
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// For any other mode we cycle through the amount of passwords to be generated
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for i := int64(0); i < config.NumberPass; i++ {
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password, err := generator.Generate()
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if err != nil {
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_, _ = fmt.Fprintf(os.Stderr, "failed to generate password: %s\n", err)
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os.Exit(1)
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}
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if config.Algorithm == apg.AlgoRandom && config.SpellPassword {
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spellPass, err := apg.Spell(password)
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if err != nil {
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_, _ = fmt.Fprintf(os.Stderr, "failed to spell password: %s\n", err)
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}
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fmt.Printf("%s (%s)\n", password, spellPass)
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continue
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}
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if config.Algorithm == apg.AlgoPronounceable && config.SpellPronounceable {
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pronouncePass, err := generator.Pronounce()
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if err != nil {
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_, _ = fmt.Fprintf(os.Stderr, "failed to pronounce password: %s\n", err)
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}
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fmt.Printf("%s (%s)\n", password, pronouncePass)
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continue
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}
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fmt.Println(password)
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if config.CheckHIBP {
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pwned, err := apg.HasBeenPwned(password)
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if err != nil {
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_, _ = fmt.Fprintf(os.Stderr, "failed to check HIBP database: %s\n", err)
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}
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if pwned {
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fmt.Print("^-- !!WARNING: The previously generated password was found in " +
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"HIBP database. Do not use it!!\n")
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}
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}
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}
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}
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// usage is used by the flag package to display the CLI usage message
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func usage() {
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// Usage text
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const ut = `apg-go v` +
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apg.VERSION + "\n" +
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`A OSS "Automated Password Generator"-clone -- https://github.com/wneessen/apg-go/
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Created 2021-2024 by Winni Neessen (MIT licensed)
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apg [-a <algo>] [-m <length>] [-x <length>] [-L] [-U] [-N] [-S] [-H] [-C]
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[-l] [-M mode] [-E char_string] [-n num_of_pass] [-mX number] [-t] [-p] [-v] [-h]
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Flags:
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-a ALGORITH Choose the password generation algorithm (Default: 1)
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- 0: pronounceable 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: full binary mode (generates simple 256 bit 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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- Note: The -bX options only apply to binary mode (Algo: 3)
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-m LENGTH Minimum length of the password to be generated (Default: 12)
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-x LENGTH 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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- Note: Due to the way the pronounceable password algorithm works,
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this setting might not always apply
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-n NUMBER Amount of password to be generated (Default: 6)
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- Note: Does not apply to binary mode (Algo: 3)
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-E CHARS List of characters to be excluded in the generated password
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-M [LUNSHClunshc] New style password flags
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- Note: new-style flags have higher priority than any of the old-style flags
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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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- Note: any of the "Minimum amount of" modes may result in
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extraordinarily long calculation times
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- Note 2: The "minimum amount of" modes do not apply in
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pronounceable mode (-a 0)
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-C Enable complex password mode (implies -L -U -N -S and disables -H)
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-H Avoid ambiguous characters in passwords (i. e.: 1, l, I, O, 0) (Default: off)
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-L Toggle lower-case characters in passwords (Default: on)
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-N Toggle numeric characters in passwords (Default: on)
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-S Toggle special characters in passwords (Default: off)
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-U Toggle upper-case characters in passwords (Default: on)
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- Note: this flag has higher priority than the other old-style flags
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-l Spell generated passwords in phonetic alphabet (Default: off)
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-t Spell generated pronounceable passwords with the corresponding
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syllables (Default: off)
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-p Check the HIBP database if the generated passwords was found in a leak before (Default: off)
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- Note: this feature requires internet connectivity
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-h Show this help text
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-v Show version string`
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_, _ = os.Stderr.WriteString(ut + "\n\n")
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}
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