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Pkcs11ElectronicID.cpp
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Pkcs11ElectronicID.cpp
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/*
* Copyright (c) 2020-2023 Estonian Information System Authority
*
* Permission is hereby granted, free of charge, to any person obtaining a copy
* of this software and associated documentation files (the "Software"), to deal
* in the Software without restriction, including without limitation the rights
* to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
* copies of the Software, and to permit persons to whom the Software is
* furnished to do so, subject to the following conditions:
*
* The above copyright notice and this permission notice shall be included in all
* copies or substantial portions of the Software.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
* AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
* OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
* SOFTWARE.
*/
#include "Pkcs11ElectronicID.hpp"
#include "../common.hpp"
#include <map>
#ifdef _WIN32
#undef UNICODE
#include <Shlobj.h>
#include <Shlwapi.h>
#endif
using namespace electronic_id;
using namespace std::string_literals;
namespace fs = std::filesystem;
namespace
{
#ifdef _WIN32
inline auto getKnownFolderPath(REFKNOWNFOLDERID knownFolderId)
{
PWSTR knownFolder = 0;
SHGetKnownFolderPath(knownFolderId, 0, nullptr, &knownFolder);
fs::path path = knownFolder;
CoTaskMemFree(knownFolder);
return path;
}
inline auto programFilesPath()
{
return getKnownFolderPath(FOLDERID_ProgramFiles);
}
inline auto system32Path()
{
return getKnownFolderPath(FOLDERID_System);
}
#endif
inline fs::path lithuanianPKCS11ModulePath()
{
#ifdef _WIN32
return programFilesPath() / L"Softemia/mcard/mcard-pkcs11.dll";
#elif defined(__APPLE__)
return "/Library/mCard/lib/mcard-pkcs11.so";
#else
return "/usr/lib/mcard-pkcs11.so";
#endif
}
inline fs::path croatianPkcs11ModulePath()
{
#ifdef _WIN32
return programFilesPath() / L"AKD/eID Middleware/pkcs11/AkdEidPkcs11_64.dll";
#elif defined __APPLE__
return "/Library/AKD/eID Middleware/pkcs11/libEidPkcs11.so"; // NB! Not tested.
#else // Linux
return "/usr/lib/akd/eidmiddleware/pkcs11/libEidPkcs11.so";
#endif
}
inline fs::path belgianPkcs11ModulePath()
{
#ifdef _WIN32
return system32Path() / L"beidpkcs11.dll";
#elif defined __APPLE__
return "/Library/Belgium Identity "
"Card/Pkcs11/beid-pkcs11.bundle/Contents/MacOS/libbeidpkcs11.dylib";
#else // Linux
return "/usr/lib/x86_64-linux-gnu/libbeidpkcs11.so.0";
#endif
}
inline fs::path czechPkcs11ModulePath()
{
#ifdef _WIN32
return system32Path() / L"eopproxyp11.dll";
#elif defined __APPLE__
return "/usr/local/lib/eOPCZE/libeopproxyp11.dylib";
#else // Linux
return "/usr/lib/x86_64-linux-gnu/libeopproxyp11.so";
#endif
}
const std::map<Pkcs11ElectronicIDType, Pkcs11ElectronicIDModule> SUPPORTED_PKCS11_MODULES {
// EstEIDIDEMIAV1 configuration is here only for testing,
// it is not enabled in getElectronicID().
{Pkcs11ElectronicIDType::EstEIDIDEMIAV1,
{
"EstEID IDEMIA v1 (PKCS#11)"s, // name
ElectronicID::Type::EstEID, // type
fs::u8path("opensc-pkcs11.so").make_preferred(), // path
JsonWebSignatureAlgorithm::ES384, // authSignatureAlgorithm
ELLIPTIC_CURVE_SIGNATURE_ALGOS(), // supportedSigningAlgorithms
3,
false,
false,
}},
{Pkcs11ElectronicIDType::LitEIDv3,
{
"Lithuanian eID (PKCS#11)"s, // name
ElectronicID::Type::LitEID, // type
lithuanianPKCS11ModulePath().make_preferred(), // path
JsonWebSignatureAlgorithm::ES384, // authSignatureAlgorithm
ELLIPTIC_CURVE_SIGNATURE_ALGOS(), // supportedSigningAlgorithms
3,
false,
false,
}},
{Pkcs11ElectronicIDType::HrvEID,
{
"Croatian eID (PKCS#11)"s, // name
ElectronicID::Type::HrvEID, // type
croatianPkcs11ModulePath().make_preferred(), // path
JsonWebSignatureAlgorithm::RS256, // authSignatureAlgorithm
RSA_SIGNATURE_ALGOS(), // supportedSigningAlgorithms
3,
true,
false,
}},
{Pkcs11ElectronicIDType::BelEIDV1_7,
{
"Belgian eID v1.7 (PKCS#11)"s, // name
ElectronicID::Type::BelEIDV1_7, // type
belgianPkcs11ModulePath().make_preferred(), // path
JsonWebSignatureAlgorithm::RS256, // authSignatureAlgorithm
RSA_SIGNATURE_ALGOS(), // supportedSigningAlgorithms
3,
true,
true,
}},
// https://github.com/Fedict/eid-mw/wiki/Applet-1.8
{Pkcs11ElectronicIDType::BelEIDV1_8,
{
"Belgian eID v1.8 (PKCS#11)"s, // name
ElectronicID::Type::BelEIDV1_8, // type
belgianPkcs11ModulePath().make_preferred(), // path
JsonWebSignatureAlgorithm::ES384, // authSignatureAlgorithm
ELLIPTIC_CURVE_SIGNATURE_ALGOS(), // supportedSigningAlgorithms
3,
true,
true,
}},
{Pkcs11ElectronicIDType::CzeEID,
{
"Czech eID (PKCS#11)"s, // name
ElectronicID::Type::CzeEID, // type
czechPkcs11ModulePath().make_preferred(), // path
JsonWebSignatureAlgorithm::RS256, // authSignatureAlgorithm
RSA_SIGNATURE_ALGOS(), // supportedSigningAlgorithms
3,
true,
false,
}},
};
const Pkcs11ElectronicIDModule& getModule(Pkcs11ElectronicIDType eidType)
{
try {
return SUPPORTED_PKCS11_MODULES.at(eidType);
} catch (const std::out_of_range&) {
THROW(ProgrammingError,
"Unknown Pkcs11ElectronicIDType enum value '" + std::to_string(int(eidType)) + "'");
}
}
} // namespace
Pkcs11ElectronicID::Pkcs11ElectronicID(Pkcs11ElectronicIDType type) :
ElectronicID {std::make_unique<pcsc_cpp::SmartCard>()}, module {getModule(type)},
manager {PKCS11CardManager::instance(module.path)}
{
bool seenAuthToken = false;
bool seenSigningToken = false;
for (const auto& token : manager->tokens()) {
const auto certType = certificateType(token.cert);
if (certType.isAuthentication()) {
authToken = token;
seenAuthToken = true;
} else if (certType.isSigning()) {
signingToken = token;
seenSigningToken = true;
}
}
if (!(seenAuthToken && seenSigningToken)) {
THROW(SmartCardChangeRequiredError, "Either authentication or signing token is missing");
}
}
pcsc_cpp::byte_vector Pkcs11ElectronicID::getCertificate(const CertificateType type) const
{
return type.isAuthentication() ? authToken.cert : signingToken.cert;
}
ElectronicID::PinMinMaxLength Pkcs11ElectronicID::authPinMinMaxLength() const
{
return {authToken.minPinLen, authToken.maxPinLen};
}
ElectronicID::PinRetriesRemainingAndMax Pkcs11ElectronicID::authPinRetriesLeft() const
{
return {authToken.retry, module.retryMax};
}
pcsc_cpp::byte_vector Pkcs11ElectronicID::signWithAuthKey(const pcsc_cpp::byte_vector& cert,
const pcsc_cpp::byte_vector& pin,
const pcsc_cpp::byte_vector& hash) const
{
try {
validateAuthHashLength(authSignatureAlgorithm(), name(), hash);
const auto signature =
manager->sign(authToken, hash, authSignatureAlgorithm().hashAlgorithm(),
module.providesExternalPinDialog,
reinterpret_cast<const char*>(pin.data()), pin.size());
if (!verifyDigest(authSignatureAlgorithm(), cert, hash, signature.first)) {
THROW(SmartCardError, "Failed to validate given signature!");
}
return signature.first;
} catch (const VerifyPinFailed& e) {
// Catch and rethrow the VerifyPinFailed error with -1 to inform the caller of the special
// case where the card does not return the remaining retry count. This is arguably a
// somewhat inelegant workaround caused by module.retryMax not being available inside
// PKCS11CardManager. We should eventually consider improving this.
if (e.status() == VerifyPinFailed::Status::RETRY_ALLOWED && module.retryMax == -1) {
throw VerifyPinFailed(VerifyPinFailed::Status::RETRY_ALLOWED, nullptr, -1);
}
throw;
}
}
ElectronicID::PinMinMaxLength Pkcs11ElectronicID::signingPinMinMaxLength() const
{
return {signingToken.minPinLen, signingToken.maxPinLen};
}
ElectronicID::PinRetriesRemainingAndMax Pkcs11ElectronicID::signingPinRetriesLeft() const
{
return {signingToken.retry, module.retryMax};
}
ElectronicID::Signature Pkcs11ElectronicID::signWithSigningKey(const pcsc_cpp::byte_vector& cert,
const pcsc_cpp::byte_vector& pin,
const pcsc_cpp::byte_vector& hash,
const HashAlgorithm hashAlgo) const
{
try {
validateSigningHash(*this, hashAlgo, hash);
// TODO: add step for supported algo detection before sign(), see if () below.
auto signature =
manager->sign(signingToken, hash, hashAlgo, module.providesExternalPinDialog,
reinterpret_cast<const char*>(pin.data()), pin.size());
if (!module.supportedSigningAlgorithms.count(signature.second)) {
THROW(SmartCardChangeRequiredError,
"Signature algorithm " + std::string(signature.second) + " is not supported by "
+ name());
}
if (!verifyDigest(signature.second, cert, hash, signature.first)) {
THROW(SmartCardError, "Failed to validate given signature!");
}
return signature;
} catch (const VerifyPinFailed& e) {
// Same issue as in signWithAuthKey().
if (e.status() == VerifyPinFailed::Status::RETRY_ALLOWED && module.retryMax == -1) {
throw VerifyPinFailed(VerifyPinFailed::Status::RETRY_ALLOWED, nullptr, -1);
}
throw;
}
}