321 lines
11 KiB
C++
321 lines
11 KiB
C++
/*
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* Copyright 2015 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include <gatekeeper/UniquePtr.h>
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#include <gatekeeper/gatekeeper.h>
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#include <endian.h>
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#define DAY_IN_MS (1000 * 60 * 60 * 24)
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namespace gatekeeper {
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void GateKeeper::Enroll(const EnrollRequest &request, EnrollResponse *response) {
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if (response == NULL) return;
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if (!request.provided_password.buffer.get()) {
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response->error = ERROR_INVALID;
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return;
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}
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secure_id_t user_id = 0;// todo: rename to policy
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uint32_t uid = request.user_id;
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if (request.password_handle.buffer.get() == NULL) {
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// Password handle does not match what is stored, generate new SecureID
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GetRandom(&user_id, sizeof(secure_id_t));
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} else {
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password_handle_t *pw_handle =
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reinterpret_cast<password_handle_t *>(request.password_handle.buffer.get());
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if (pw_handle->version > HANDLE_VERSION) {
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response->error = ERROR_INVALID;
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return;
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}
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user_id = pw_handle->user_id;
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uint64_t timestamp = GetMillisecondsSinceBoot();
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uint32_t timeout = 0;
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bool throttle = (pw_handle->version >= HANDLE_VERSION_THROTTLE);
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if (throttle) {
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bool throttle_secure = pw_handle->flags & HANDLE_FLAG_THROTTLE_SECURE;
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failure_record_t record;
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if (!GetFailureRecord(uid, user_id, &record, throttle_secure)) {
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response->error = ERROR_UNKNOWN;
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return;
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}
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if (ThrottleRequest(uid, timestamp, &record, throttle_secure, response)) return;
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if (!IncrementFailureRecord(uid, user_id, timestamp, &record, throttle_secure)) {
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response->error = ERROR_UNKNOWN;
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return;
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}
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timeout = ComputeRetryTimeout(&record);
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}
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if (!DoVerify(pw_handle, request.enrolled_password)) {
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// incorrect old password
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if (throttle && timeout > 0) {
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response->SetRetryTimeout(timeout);
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} else {
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response->error = ERROR_INVALID;
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}
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return;
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}
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}
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uint64_t flags = 0;
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if (ClearFailureRecord(uid, user_id, true)) {
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flags |= HANDLE_FLAG_THROTTLE_SECURE;
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} else {
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ClearFailureRecord(uid, user_id, false);
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}
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salt_t salt;
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GetRandom(&salt, sizeof(salt));
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SizedBuffer password_handle;
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if (!CreatePasswordHandle(&password_handle,
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salt, user_id, flags, HANDLE_VERSION, request.provided_password.buffer.get(),
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request.provided_password.length)) {
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response->error = ERROR_INVALID;
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return;
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}
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response->SetEnrolledPasswordHandle(&password_handle);
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}
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void GateKeeper::Verify(const VerifyRequest &request, VerifyResponse *response) {
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if (response == NULL) return;
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if (!request.provided_password.buffer.get() || !request.password_handle.buffer.get()) {
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response->error = ERROR_INVALID;
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return;
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}
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password_handle_t *password_handle = reinterpret_cast<password_handle_t *>(
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request.password_handle.buffer.get());
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if (password_handle->version > HANDLE_VERSION) {
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response->error = ERROR_INVALID;
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return;
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}
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secure_id_t user_id = password_handle->user_id;
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secure_id_t authenticator_id = 0;
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uint32_t uid = request.user_id;
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uint64_t timestamp = GetMillisecondsSinceBoot();
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uint32_t timeout = 0;
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bool throttle = (password_handle->version >= HANDLE_VERSION_THROTTLE);
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bool throttle_secure = password_handle->flags & HANDLE_FLAG_THROTTLE_SECURE;
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if (throttle) {
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failure_record_t record;
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if (!GetFailureRecord(uid, user_id, &record, throttle_secure)) {
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response->error = ERROR_UNKNOWN;
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return;
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}
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if (ThrottleRequest(uid, timestamp, &record, throttle_secure, response)) return;
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if (!IncrementFailureRecord(uid, user_id, timestamp, &record, throttle_secure)) {
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response->error = ERROR_UNKNOWN;
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return;
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}
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timeout = ComputeRetryTimeout(&record);
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} else {
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response->request_reenroll = true;
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}
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if (DoVerify(password_handle, request.provided_password)) {
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// Signature matches
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UniquePtr<uint8_t> auth_token_buffer;
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uint32_t auth_token_len;
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MintAuthToken(&auth_token_buffer, &auth_token_len, timestamp,
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user_id, authenticator_id, request.challenge);
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SizedBuffer auth_token(auth_token_len);
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memcpy(auth_token.buffer.get(), auth_token_buffer.get(), auth_token_len);
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response->SetVerificationToken(&auth_token);
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if (throttle) ClearFailureRecord(uid, user_id, throttle_secure);
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} else {
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// compute the new timeout given the incremented record
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if (throttle && timeout > 0) {
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response->SetRetryTimeout(timeout);
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} else {
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response->error = ERROR_INVALID;
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}
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}
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}
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bool GateKeeper::CreatePasswordHandle(SizedBuffer *password_handle_buffer, salt_t salt,
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secure_id_t user_id, uint64_t flags, uint8_t handle_version, const uint8_t *password,
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uint32_t password_length) {
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password_handle_buffer->buffer.reset(new uint8_t[sizeof(password_handle_t)]);
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password_handle_buffer->length = sizeof(password_handle_t);
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password_handle_t *password_handle = reinterpret_cast<password_handle_t *>(
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password_handle_buffer->buffer.get());
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password_handle->version = handle_version;
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password_handle->salt = salt;
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password_handle->user_id = user_id;
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password_handle->flags = flags;
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password_handle->hardware_backed = IsHardwareBacked();
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uint32_t metadata_length = sizeof(user_id) + sizeof(flags) + sizeof(HANDLE_VERSION);
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const size_t to_sign_size = password_length + metadata_length;
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UniquePtr<uint8_t> to_sign(new uint8_t[to_sign_size]);
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if (to_sign.get() == nullptr) {
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return false;
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}
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memcpy(to_sign.get(), password_handle, metadata_length);
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memcpy(to_sign.get() + metadata_length, password, password_length);
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const uint8_t *password_key = NULL;
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uint32_t password_key_length = 0;
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GetPasswordKey(&password_key, &password_key_length);
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if (!password_key || password_key_length == 0) {
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return false;
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}
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ComputePasswordSignature(password_handle->signature, sizeof(password_handle->signature),
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password_key, password_key_length, to_sign.get(), to_sign_size, salt);
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return true;
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}
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bool GateKeeper::DoVerify(const password_handle_t *expected_handle, const SizedBuffer &password) {
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if (!password.buffer.get()) return false;
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SizedBuffer provided_handle;
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if (!CreatePasswordHandle(&provided_handle, expected_handle->salt, expected_handle->user_id,
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expected_handle->flags, expected_handle->version,
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password.buffer.get(), password.length)) {
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return false;
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}
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password_handle_t *generated_handle =
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reinterpret_cast<password_handle_t *>(provided_handle.buffer.get());
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return memcmp_s(generated_handle->signature, expected_handle->signature,
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sizeof(expected_handle->signature)) == 0;
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}
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void GateKeeper::MintAuthToken(UniquePtr<uint8_t> *auth_token, uint32_t *length,
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uint64_t timestamp, secure_id_t user_id, secure_id_t authenticator_id,
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uint64_t challenge) {
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if (auth_token == NULL) return;
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hw_auth_token_t *token = new hw_auth_token_t;
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SizedBuffer serialized_auth_token;
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token->version = HW_AUTH_TOKEN_VERSION;
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token->challenge = challenge;
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token->user_id = user_id;
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token->authenticator_id = authenticator_id;
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token->authenticator_type = htonl(HW_AUTH_PASSWORD);
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token->timestamp = htobe64(timestamp);
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const uint8_t *auth_token_key = NULL;
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uint32_t key_len = 0;
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if (GetAuthTokenKey(&auth_token_key, &key_len)) {
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uint32_t hash_len = (uint32_t)((uint8_t *)&token->hmac - (uint8_t *)token);
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ComputeSignature(token->hmac, sizeof(token->hmac), auth_token_key, key_len,
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reinterpret_cast<uint8_t *>(token), hash_len);
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delete[] auth_token_key;
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} else {
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memset(token->hmac, 0, sizeof(token->hmac));
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}
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if (length != NULL) *length = sizeof(*token);
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auth_token->reset(reinterpret_cast<uint8_t *>(token));
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}
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/*
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* Calculates the timeout in milliseconds as a function of the failure
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* counter 'x' as follows:
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*
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* [0. 5) -> 0
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* 5 -> 30
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* [6, 10) -> 0
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* [11, 30) -> 30
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* [30, 140) -> 30 * (2^((x - 30)/10))
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* [140, inf) -> 1 day
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*
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*/
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uint32_t GateKeeper::ComputeRetryTimeout(const failure_record_t *record) {
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static const int failure_timeout_ms = 30000;
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if (record->failure_counter == 0) return 0;
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if (record->failure_counter > 0 && record->failure_counter <= 10) {
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if (record->failure_counter % 5 == 0) {
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return failure_timeout_ms;
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} else {
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return 0;
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}
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} else if (record->failure_counter < 30) {
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return failure_timeout_ms;
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} else if (record->failure_counter < 140) {
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return failure_timeout_ms << ((record->failure_counter - 30) / 10);
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}
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return DAY_IN_MS;
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}
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bool GateKeeper::ThrottleRequest(uint32_t uid, uint64_t timestamp,
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failure_record_t *record, bool secure, GateKeeperMessage *response) {
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uint64_t last_checked = record->last_checked_timestamp;
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uint32_t timeout = ComputeRetryTimeout(record);
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if (timeout > 0) {
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// we have a pending timeout
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if (timestamp < last_checked + timeout && timestamp > last_checked) {
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// attempt before timeout expired, return remaining time
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response->SetRetryTimeout(timeout - (timestamp - last_checked));
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return true;
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} else if (timestamp <= last_checked) {
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// device was rebooted or timer reset, don't count as new failure but
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// reset timeout
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record->last_checked_timestamp = timestamp;
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if (!WriteFailureRecord(uid, record, secure)) {
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response->error = ERROR_UNKNOWN;
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return true;
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}
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response->SetRetryTimeout(timeout);
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return true;
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}
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}
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return false;
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}
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bool GateKeeper::IncrementFailureRecord(uint32_t uid, secure_id_t user_id, uint64_t timestamp,
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failure_record_t *record, bool secure) {
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record->secure_user_id = user_id;
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record->failure_counter++;
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record->last_checked_timestamp = timestamp;
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return WriteFailureRecord(uid, record, secure);
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}
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} // namespace gatekeeper
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