forked from lix-project/lix
crypto.cc: API cleanup and add generate() / to_string() methods
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146af4ee9b
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@ -8,15 +8,15 @@
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namespace nix {
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static std::pair<std::string, std::string> split(const string & s)
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static std::pair<std::string_view, std::string_view> split(std::string_view s)
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{
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size_t colon = s.find(':');
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if (colon == std::string::npos || colon == 0)
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return {"", ""};
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return {std::string(s, 0, colon), std::string(s, colon + 1)};
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return {s.substr(0, colon), s.substr(colon + 1)};
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}
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Key::Key(const string & s)
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Key::Key(std::string_view s)
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{
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auto ss = split(s);
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@ -29,7 +29,12 @@ Key::Key(const string & s)
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key = base64Decode(key);
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}
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SecretKey::SecretKey(const string & s)
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std::string Key::to_string() const
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{
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return name + ":" + base64Encode(key);
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}
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SecretKey::SecretKey(std::string_view s)
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: Key(s)
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{
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#if HAVE_SODIUM
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@ -45,7 +50,7 @@ SecretKey::SecretKey(const string & s)
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}
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#endif
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std::string SecretKey::signDetached(const std::string & data) const
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std::string SecretKey::signDetached(std::string_view data) const
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{
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#if HAVE_SODIUM
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unsigned char sig[crypto_sign_BYTES];
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@ -69,7 +74,21 @@ PublicKey SecretKey::toPublicKey() const
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#endif
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}
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PublicKey::PublicKey(const string & s)
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SecretKey SecretKey::generate(std::string_view name)
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{
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#if HAVE_SODIUM
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unsigned char pk[crypto_sign_PUBLICKEYBYTES];
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unsigned char sk[crypto_sign_SECRETKEYBYTES];
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if (crypto_sign_keypair(pk, sk) != 0)
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throw Error("key generation failed");
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return SecretKey(name, std::string((char *) sk, crypto_sign_SECRETKEYBYTES));
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#else
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noSodium();
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#endif
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}
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PublicKey::PublicKey(std::string_view s)
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: Key(s)
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{
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#if HAVE_SODIUM
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@ -84,7 +103,7 @@ bool verifyDetached(const std::string & data, const std::string & sig,
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#if HAVE_SODIUM
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auto ss = split(sig);
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auto key = publicKeys.find(ss.first);
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auto key = publicKeys.find(std::string(ss.first));
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if (key == publicKeys.end()) return false;
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auto sig2 = base64Decode(ss.second);
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@ -13,32 +13,40 @@ struct Key
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/* Construct Key from a string in the format
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‘<name>:<key-in-base64>’. */
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Key(const std::string & s);
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Key(std::string_view s);
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std::string to_string() const;
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protected:
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Key(const std::string & name, const std::string & key)
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: name(name), key(key) { }
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Key(std::string_view name, std::string && key)
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: name(name), key(std::move(key)) { }
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};
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struct PublicKey;
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struct SecretKey : Key
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{
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SecretKey(const std::string & s);
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SecretKey(std::string_view s);
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/* Return a detached signature of the given string. */
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std::string signDetached(const std::string & s) const;
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std::string signDetached(std::string_view s) const;
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PublicKey toPublicKey() const;
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static SecretKey generate(std::string_view name);
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private:
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SecretKey(std::string_view name, std::string && key)
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: Key(name, std::move(key)) { }
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};
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struct PublicKey : Key
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{
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PublicKey(const std::string & data);
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PublicKey(std::string_view data);
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private:
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PublicKey(const std::string & name, const std::string & key)
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: Key(name, key) { }
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PublicKey(std::string_view name, std::string && key)
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: Key(name, std::move(key)) { }
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friend struct SecretKey;
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};
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@ -19,10 +19,6 @@
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#include <sys/stat.h>
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#include <fcntl.h>
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#if HAVE_SODIUM
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#include <sodium.h>
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#endif
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namespace nix_store {
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@ -980,18 +976,11 @@ static void opGenerateBinaryCacheKey(Strings opFlags, Strings opArgs)
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string secretKeyFile = *i++;
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string publicKeyFile = *i++;
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#if HAVE_SODIUM
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unsigned char pk[crypto_sign_PUBLICKEYBYTES];
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unsigned char sk[crypto_sign_SECRETKEYBYTES];
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if (crypto_sign_keypair(pk, sk) != 0)
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throw Error("key generation failed");
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auto secretKey = SecretKey::generate(keyName);
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writeFile(publicKeyFile, keyName + ":" + base64Encode(string((char *) pk, crypto_sign_PUBLICKEYBYTES)));
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writeFile(publicKeyFile, secretKey.toPublicKey().to_string());
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umask(0077);
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writeFile(secretKeyFile, keyName + ":" + base64Encode(string((char *) sk, crypto_sign_SECRETKEYBYTES)));
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#else
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throw Error("Nix was not compiled with libsodium, required for signed binary cache support");
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#endif
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writeFile(secretKeyFile, secretKey.to_string());
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}
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