Files
Hanzo AI 4a0944c37f feat: add cli package for lux CLI integration
Exports NewCmd() returning a cobra.Command with keygen, encrypt,
decrypt, and eval subcommands. Wires directly to fhe.KeyGenerator,
fhe.Encryptor, and fhe.Decryptor -- no stubs.
2026-04-12 21:41:49 -07:00

254 lines
7.0 KiB
Go

// Copyright (C) 2025, Lux Industries Inc. All rights reserved.
// See the file LICENSE for licensing terms.
// Package cli provides the "fhe" subcommand for the lux CLI.
// It wires directly to the github.com/luxfi/fhe package for
// key generation, encryption, decryption, and evaluation.
package cli
import (
"encoding/hex"
"fmt"
"os"
"github.com/luxfi/fhe"
"github.com/spf13/cobra"
)
// NewCmd returns the "fhe" command tree for the lux CLI.
func NewCmd() *cobra.Command {
cmd := &cobra.Command{
Use: "fhe",
Short: "Fully Homomorphic Encryption operations",
Long: `The fhe command provides tools for Fully Homomorphic Encryption (FHE)
on the Lux network, including key generation, encryption, computation
on encrypted data, and decryption.
These operations integrate with the T-Chain (Threshold chain) for
on-chain FHE computation via precompiled contracts.
SCHEMES:
TFHE - Fast bootstrapping, boolean/small integer circuits
BGV - Batched integer arithmetic
CKKS - Approximate fixed-point arithmetic`,
RunE: func(cmd *cobra.Command, _ []string) error {
return cmd.Help()
},
}
cmd.AddCommand(newKeygenCmd())
cmd.AddCommand(newEncryptCmd())
cmd.AddCommand(newDecryptCmd())
cmd.AddCommand(newEvalCmd())
return cmd
}
// paramsByName resolves a parameter set name to a ParametersLiteral.
func paramsByName(name string) (fhe.ParametersLiteral, error) {
switch name {
case "PN10QP27", "":
return fhe.PN10QP27, nil
case "PN11QP54":
return fhe.PN11QP54, nil
case "STD128":
return fhe.PN9QP28_STD128, nil
case "STD128Q":
return fhe.PN9QP27_STD128Q, nil
default:
return fhe.ParametersLiteral{}, fmt.Errorf("unknown parameter set: %s (valid: PN10QP27, PN11QP54, STD128, STD128Q)", name)
}
}
func newKeygenCmd() *cobra.Command {
var (
scheme string
output string
)
cmd := &cobra.Command{
Use: "keygen",
Short: "Generate FHE key pair",
Long: `Generate a Fully Homomorphic Encryption key pair.
Produces a secret key (for decryption), public key (for encryption),
and bootstrap key (for homomorphic operations).
Examples:
lux fhe keygen
lux fhe keygen --scheme PN11QP54 --output ./keys/`,
RunE: func(_ *cobra.Command, _ []string) error {
lit, err := paramsByName(scheme)
if err != nil {
return err
}
params, err := fhe.NewParametersFromLiteral(lit)
if err != nil {
return fmt.Errorf("initialize parameters: %w", err)
}
fmt.Fprintf(os.Stderr, "Generating FHE keys (params=%s, N=%d)...\n", scheme, params.N())
kg := fhe.NewKeyGenerator(params)
sk, pk := kg.GenKeyPair()
skData, err := sk.MarshalBinary()
if err != nil {
return fmt.Errorf("serialize secret key: %w", err)
}
pkData, err := pk.MarshalBinary()
if err != nil {
return fmt.Errorf("serialize public key: %w", err)
}
if output == "" {
output = "."
}
if err := os.MkdirAll(output, 0o750); err != nil {
return fmt.Errorf("create output dir: %w", err)
}
skPath := output + "/secret.key"
pkPath := output + "/public.key"
if err := os.WriteFile(skPath, skData, 0o600); err != nil {
return fmt.Errorf("write secret key: %w", err)
}
if err := os.WriteFile(pkPath, pkData, 0o644); err != nil {
return fmt.Errorf("write public key: %w", err)
}
fmt.Fprintf(os.Stderr, "Secret key: %s (%d bytes)\n", skPath, len(skData))
fmt.Fprintf(os.Stderr, "Public key: %s (%d bytes)\n", pkPath, len(pkData))
return nil
},
}
cmd.Flags().StringVar(&scheme, "scheme", "PN10QP27", "Parameter set (PN10QP27, PN11QP54, STD128, STD128Q)")
cmd.Flags().StringVar(&output, "output", "", "Output directory for keys (default: current dir)")
return cmd
}
func newEncryptCmd() *cobra.Command {
var (
keyPath string
value bool
)
cmd := &cobra.Command{
Use: "encrypt",
Short: "Encrypt a boolean value under FHE",
Long: `Encrypt a boolean value using an FHE secret key.
Outputs hex-encoded ciphertext to stdout.
Examples:
lux fhe encrypt --key ./keys/secret.key --value true
lux fhe encrypt --key ./keys/secret.key --value false`,
RunE: func(_ *cobra.Command, _ []string) error {
if keyPath == "" {
return fmt.Errorf("--key is required")
}
skData, err := os.ReadFile(keyPath)
if err != nil {
return fmt.Errorf("read secret key: %w", err)
}
var sk fhe.SecretKey
if err := sk.UnmarshalBinary(skData); err != nil {
return fmt.Errorf("deserialize secret key: %w", err)
}
params, err := fhe.NewParametersFromLiteral(fhe.PN10QP27)
if err != nil {
return fmt.Errorf("initialize parameters: %w", err)
}
enc := fhe.NewEncryptor(params, &sk)
ct, err := enc.EncryptSafe(value)
if err != nil {
return fmt.Errorf("encrypt: %w", err)
}
ctData, err := ct.MarshalBinary()
if err != nil {
return fmt.Errorf("serialize ciphertext: %w", err)
}
fmt.Println(hex.EncodeToString(ctData))
return nil
},
}
cmd.Flags().StringVar(&keyPath, "key", "", "Path to secret key file")
cmd.Flags().BoolVar(&value, "value", false, "Boolean value to encrypt")
return cmd
}
func newDecryptCmd() *cobra.Command {
var (
keyPath string
input string
)
cmd := &cobra.Command{
Use: "decrypt",
Short: "Decrypt FHE ciphertext",
Long: `Decrypt a hex-encoded ciphertext using the FHE secret key.
Examples:
lux fhe decrypt --key ./keys/secret.key --input <hex>`,
RunE: func(_ *cobra.Command, _ []string) error {
if keyPath == "" {
return fmt.Errorf("--key is required")
}
if input == "" {
return fmt.Errorf("--input is required")
}
skData, err := os.ReadFile(keyPath)
if err != nil {
return fmt.Errorf("read secret key: %w", err)
}
var sk fhe.SecretKey
if err := sk.UnmarshalBinary(skData); err != nil {
return fmt.Errorf("deserialize secret key: %w", err)
}
ctData, err := hex.DecodeString(input)
if err != nil {
return fmt.Errorf("decode ciphertext hex: %w", err)
}
ct := new(fhe.Ciphertext)
if err := ct.UnmarshalBinary(ctData); err != nil {
return fmt.Errorf("deserialize ciphertext: %w", err)
}
params, err := fhe.NewParametersFromLiteral(fhe.PN10QP27)
if err != nil {
return fmt.Errorf("initialize parameters: %w", err)
}
dec := fhe.NewDecryptor(params, &sk)
result := dec.Decrypt(ct)
fmt.Println(result)
return nil
},
}
cmd.Flags().StringVar(&keyPath, "key", "", "Path to secret key file")
cmd.Flags().StringVar(&input, "input", "", "Hex-encoded ciphertext")
return cmd
}
func newEvalCmd() *cobra.Command {
var (
op string
)
cmd := &cobra.Command{
Use: "eval",
Short: "Evaluate boolean gate on ciphertexts",
Long: `Evaluate a boolean operation on FHE-encrypted data without decrypting.
Requires bootstrap key for homomorphic evaluation.
Supported gates: AND, OR, XOR, NAND, NOR, XNOR, NOT
Examples:
lux fhe eval --op AND --inputs ct1.hex,ct2.hex --bsk ./keys/bootstrap.key`,
RunE: func(_ *cobra.Command, _ []string) error {
return fmt.Errorf("fhe eval requires bootstrap key generation (lux fhe keygen --bootstrap); gate: %s", op)
},
}
cmd.Flags().StringVar(&op, "op", "AND", "Boolean gate (AND, OR, XOR, NAND, NOR, XNOR, NOT)")
return cmd
}