2019-09-10 18:55:24 +00:00
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namespace Crypto {
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public class SymmetricCipher {
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private GCrypt.Cipher.Cipher cipher;
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public static bool supports(string algo_name) {
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GCrypt.Cipher.Algorithm algo;
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GCrypt.Cipher.Mode mode;
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GCrypt.Cipher.Flag flags;
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return parse(algo_name, out algo, out mode, out flags);
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}
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private static unowned string mode_to_string(GCrypt.Cipher.Mode mode) {
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switch (mode) {
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2019-09-16 21:47:38 +00:00
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case GCrypt.Cipher.Mode.ECB: return "ECB";
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case GCrypt.Cipher.Mode.CFB: return "CFB";
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case GCrypt.Cipher.Mode.CBC: return "CBC";
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case GCrypt.Cipher.Mode.STREAM: return "STREAM";
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case GCrypt.Cipher.Mode.OFB: return "OFB";
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case GCrypt.Cipher.Mode.CTR: return "CTR";
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case GCrypt.Cipher.Mode.AESWRAP: return "AESWRAP";
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case GCrypt.Cipher.Mode.GCM: return "GCM";
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case GCrypt.Cipher.Mode.POLY1305: return "POLY1305";
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case GCrypt.Cipher.Mode.OCB: return "OCB";
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case GCrypt.Cipher.Mode.CFB8: return "CFB8";
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case GCrypt.Cipher.Mode.XTS: return "XTS";
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2019-09-10 18:55:24 +00:00
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}
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return "NONE";
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}
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private static GCrypt.Cipher.Mode mode_from_string(string name) {
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switch (name) {
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case "ECB": return GCrypt.Cipher.Mode.ECB;
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case "CFB": return GCrypt.Cipher.Mode.CFB;
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case "CBC": return GCrypt.Cipher.Mode.CBC;
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case "STREAM": return GCrypt.Cipher.Mode.STREAM;
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case "OFB": return GCrypt.Cipher.Mode.OFB;
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case "CTR": return GCrypt.Cipher.Mode.CTR;
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case "AESWRAP": return GCrypt.Cipher.Mode.AESWRAP;
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case "GCM": return GCrypt.Cipher.Mode.GCM;
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case "POLY1305": return GCrypt.Cipher.Mode.POLY1305;
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case "OCB": return GCrypt.Cipher.Mode.OCB;
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case "CFB8": return GCrypt.Cipher.Mode.CFB8;
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case "XTS": return GCrypt.Cipher.Mode.XTS;
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}
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return GCrypt.Cipher.Mode.NONE;
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}
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private static string flags_to_string(GCrypt.Cipher.Flag flags) {
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string? s = null;
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if ((GCrypt.Cipher.Flag.CBC_MAC & flags) != 0) s = (s == null ? "" : @"$s-") + "MAC";
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if ((GCrypt.Cipher.Flag.CBC_CTS & flags) != 0) s = (s == null ? "" : @"$s-") + "CTS";
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if ((GCrypt.Cipher.Flag.ENABLE_SYNC & flags) != 0) s = (s == null ? "" : @"$s-") + "SYNC";
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if ((GCrypt.Cipher.Flag.SECURE & flags) != 0) s = (s == null ? "" : @"$s-") + "SECURE";
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return s ?? "NONE";
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}
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private static GCrypt.Cipher.Flag flag_from_string(string flag_name) {
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if (flag_name == "SECURE") return GCrypt.Cipher.Flag.SECURE;
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if (flag_name == "SYNC") return GCrypt.Cipher.Flag.ENABLE_SYNC;
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if (flag_name == "CTS") return GCrypt.Cipher.Flag.CBC_CTS;
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if (flag_name == "MAC") return GCrypt.Cipher.Flag.CBC_MAC;
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return 0;
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}
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private static GCrypt.Cipher.Flag flags_from_string(string flag_names) {
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GCrypt.Cipher.Flag flags = 0;
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foreach(string flag in flag_names.split("-")) {
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flags |= flag_from_string(flag);
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}
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return flags;
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}
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private static bool parse(string algo_name, out GCrypt.Cipher.Algorithm algo, out GCrypt.Cipher.Mode mode, out GCrypt.Cipher.Flag flags) {
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algo = GCrypt.Cipher.Algorithm.NONE;
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mode = GCrypt.Cipher.Mode.NONE;
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flags = 0;
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string[] algo_parts = algo_name.split("-", 3);
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algo = GCrypt.Cipher.Algorithm.from_string(algo_parts[0]);
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if (algo_parts.length >= 2) {
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mode = mode_from_string(algo_parts[1]);
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}
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if (algo_parts.length == 3) {
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flags |= flags_from_string(algo_parts[2]);
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}
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return to_algo_name(algo, mode, flags) == algo_name;
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}
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private static string to_algo_name(GCrypt.Cipher.Algorithm algo = GCrypt.Cipher.Algorithm.NONE, GCrypt.Cipher.Mode mode = GCrypt.Cipher.Mode.NONE, GCrypt.Cipher.Flag flags = 0) {
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if (flags != 0) {
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return @"$algo-$(mode_to_string(mode))-$(flags_to_string(flags))";
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} else if (mode != GCrypt.Cipher.Mode.NONE) {
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return @"$algo-$(mode_to_string(mode))";
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} else {
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return algo.to_string();
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}
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}
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public SymmetricCipher(string algo_name) throws Error {
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GCrypt.Cipher.Algorithm algo;
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GCrypt.Cipher.Mode mode;
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GCrypt.Cipher.Flag flags;
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if (parse(algo_name, out algo, out mode, out flags)) {
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this.gcrypt(algo, mode, flags);
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} else {
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throw new Error.ILLEGAL_ARGUMENTS(@"The algorithm $algo_name is not supported");
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}
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}
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private SymmetricCipher.gcrypt(GCrypt.Cipher.Algorithm algo, GCrypt.Cipher.Mode mode, GCrypt.Cipher.Flag flags) throws Error {
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may_throw_gcrypt_error(GCrypt.Cipher.Cipher.open(out this.cipher, algo, mode, flags));
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}
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public void set_key(uint8[] key) throws Error {
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may_throw_gcrypt_error(cipher.set_key(key));
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}
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public void set_iv(uint8[] iv) throws Error {
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may_throw_gcrypt_error(cipher.set_iv(iv));
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}
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public void set_counter_vector(uint8[] ctr) throws Error {
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may_throw_gcrypt_error(cipher.set_counter_vector(ctr));
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}
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public void reset() throws Error {
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may_throw_gcrypt_error(cipher.reset());
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}
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public uint8[] get_tag(size_t taglen) throws Error {
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uint8[] tag = new uint8[taglen];
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may_throw_gcrypt_error(cipher.get_tag(tag));
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return tag;
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}
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public void check_tag(uint8[] tag) throws Error {
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may_throw_gcrypt_error(cipher.check_tag(tag));
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}
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public void encrypt(uint8[] output, uint8[] input) throws Error {
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may_throw_gcrypt_error(cipher.encrypt(output, input));
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}
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public void decrypt(uint8[] output, uint8[] input) throws Error {
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may_throw_gcrypt_error(cipher.decrypt(output, input));
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}
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public void sync() throws Error {
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may_throw_gcrypt_error(cipher.sync());
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}
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}
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}
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