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https://github.com/rwinkhart/rcw.git
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Initial encryption/decryption via ChaCha20-Poly1305
This commit is contained in:
+24
-2
@@ -4,12 +4,34 @@ import (
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"fmt"
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"os"
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"rcw/daemon"
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"rcw/wrappers"
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)
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// This sample program serves purley as a way to interactively test the features
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// of RCW before building it into your own application.
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//
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// Usage:
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// rcw <text> : Runs the rcw daemon to serve the provided text for three minutes
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// rcw : Requests the data served by the RCW daemon and outputs it to stdout
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// rcw enc <text> <passwd> : Encrypts the provided text and outputs the ciphertext to encrypted-example.txt
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// rcw dec <passwd> : Decrypts the provided file and outputs the plaintext to stdout
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func main() {
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if len(os.Args) > 1 {
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switch len(os.Args) {
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case 2:
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// serve data
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daemon.Start(os.Args[1])
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} else {
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case 3:
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// decrypt file
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encBytes, _ := os.ReadFile("encrypted-example.txt")
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decBytes := wrappers.DecryptCha(encBytes, []byte(os.Args[2]))
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fmt.Println(string(decBytes))
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case 4:
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// encrypt data (from cli args)
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encBytes := wrappers.EncryptCha([]byte(os.Args[2]), []byte(os.Args[3]))
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os.WriteFile("encrypted-example.txt", encBytes, 0644)
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default:
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// request served data
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fmt.Println(daemon.Call())
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}
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}
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@@ -6,6 +6,7 @@ require github.com/rwinkhart/peercred-mini v0.0.0-20250407033241-c09add2eceea
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require (
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github.com/Microsoft/go-winio v0.6.2
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golang.org/x/crypto v0.37.0
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golang.org/x/sys v0.32.0
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)
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@@ -4,3 +4,5 @@ github.com/rwinkhart/peercred-mini v0.0.0-20250407033241-c09add2eceea h1:VE2ti/A
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github.com/rwinkhart/peercred-mini v0.0.0-20250407033241-c09add2eceea/go.mod h1:t+YkvAdnTKTrg4d469tw3K+GCUzX/Bja4h8yKjSIsGs=
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github.com/rwinkhart/sys-freebsd-13-xucred v0.32.0 h1:KRbqimv9Eexf3VB2FrRAQ4v2fGGu7gt3ayMgdT0FNao=
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github.com/rwinkhart/sys-freebsd-13-xucred v0.32.0/go.mod h1:BJP2sWEmIv4KK5OTEluFJCKSidICx8ciO85XgH3Ak8k=
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golang.org/x/crypto v0.37.0 h1:kJNSjF/Xp7kU0iB2Z+9viTPMW4EqqsrywMXLJOOsXSE=
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golang.org/x/crypto v0.37.0/go.mod h1:vg+k43peMZ0pUMhYmVAWysMK35e6ioLh3wB8ZCAfbVc=
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@@ -0,0 +1,71 @@
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package wrappers
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import (
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"crypto/rand"
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"io"
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"log"
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"golang.org/x/crypto/chacha20poly1305"
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)
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const (
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nonceSizeCha = chacha20poly1305.NonceSizeX
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saltSizeCha = 16
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)
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// EncryptCha encrypts data using ChaCha20-Poly1305
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func EncryptCha(data []byte, passphrase []byte) []byte {
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// generate a random salt
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salt := make([]byte, saltSizeCha)
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io.ReadFull(rand.Reader, salt)
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// derive key from passphrase using the salt
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// TODO ensure the passphrase is consistent (store a hashed version to compare against)
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key := deriveKey(passphrase, salt)
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// create ChaCha20-Poly1305 cipher
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aead, _ := chacha20poly1305.NewX(key)
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// generate a random nonce
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nonce := make([]byte, nonceSizeCha)
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io.ReadFull(rand.Reader, nonce)
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// encrypt the data
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ciphertext := aead.Seal(nil, nonce, data, nil)
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// format: salt + nonce + ciphertext
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result := make([]byte, 0, saltSizeCha+nonceSizeCha+len(ciphertext))
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result = append(result, salt...)
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result = append(result, nonce...)
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result = append(result, ciphertext...)
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return result
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}
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// DecryptCha decrypts data using ChaCha20-Poly1305
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func DecryptCha(encryptedData []byte, passphrase []byte) []byte {
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if len(encryptedData) < saltSizeCha+nonceSizeCha {
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log.Fatalf("encrypted data is too short")
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return nil
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}
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// extract salt, nonce, and ciphertext
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salt := encryptedData[:saltSizeCha]
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nonce := encryptedData[saltSizeCha : saltSizeCha+nonceSizeCha]
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ciphertext := encryptedData[saltSizeCha+nonceSizeCha:]
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// derive key from passphrase using the salt
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key := deriveKey(passphrase, salt)
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// create ChaCha20-Poly1305 cipher
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aead, _ := chacha20poly1305.NewX(key)
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// decrypt the data
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plaintext, err := aead.Open(nil, nonce, ciphertext, nil)
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if err != nil {
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log.Fatalf("decryption failed (possibly wrong passphrase): %w", err)
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return nil
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}
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return plaintext
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}
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@@ -0,0 +1,19 @@
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package wrappers
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import (
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"golang.org/x/crypto/argon2"
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"golang.org/x/crypto/chacha20poly1305"
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)
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// parameters for Argon2
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const (
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argonTime = 1
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argonMemory = 64 * 1024
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argonThreads = 4
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argonKeyLen = chacha20poly1305.KeySize
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)
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// DeriveKey derives an encryption key from a passphrase using Argon2.
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func deriveKey(passphrase []byte, salt []byte) []byte {
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return argon2.IDKey(passphrase, salt, argonTime, argonMemory, argonThreads, argonKeyLen)
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}
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