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783 lines
34 KiB
783 lines
34 KiB
// |
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// Copyright (C) 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 "trunks/resource_manager.h" |
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#include <string> |
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#include <vector> |
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#include <base/bind.h> |
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#include <gmock/gmock.h> |
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#include <gtest/gtest.h> |
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#include "trunks/error_codes.h" |
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#include "trunks/mock_command_transceiver.h" |
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#include "trunks/mock_tpm.h" |
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#include "trunks/trunks_factory_for_test.h" |
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using testing::_; |
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using testing::DoAll; |
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using testing::Eq; |
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using testing::Field; |
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using testing::InSequence; |
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using testing::Return; |
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using testing::ReturnPointee; |
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using testing::SetArgumentPointee; |
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using testing::StrictMock; |
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namespace { |
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const trunks::TPM_HANDLE kArbitraryObjectHandle = trunks::TRANSIENT_FIRST + 25; |
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const trunks::TPM_HANDLE kArbitrarySessionHandle = trunks::HMAC_SESSION_FIRST; |
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void Assign(std::string* to, const std::string& from) { |
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*to = from; |
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} |
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class ScopedDisableLogging { |
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public: |
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ScopedDisableLogging() : original_severity_(logging::GetMinLogLevel()) { |
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logging::SetMinLogLevel(logging::LOG_FATAL); |
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} |
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~ScopedDisableLogging() { logging::SetMinLogLevel(original_severity_); } |
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private: |
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logging::LogSeverity original_severity_; |
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}; |
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} // namespace |
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namespace trunks { |
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class ResourceManagerTest : public testing::Test { |
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public: |
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const std::vector<TPM_HANDLE> kNoHandles; |
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const std::string kNoAuthorization; |
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const std::string kNoParameters; |
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ResourceManagerTest() : resource_manager_(factory_, &transceiver_) {} |
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~ResourceManagerTest() override {} |
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void SetUp() override { factory_.set_tpm(&tpm_); } |
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// Builds a well-formed command. |
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std::string CreateCommand(TPM_CC code, |
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const std::vector<TPM_HANDLE>& handles, |
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const std::string& authorization, |
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const std::string& parameters) { |
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std::string buffer; |
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TPM_ST tag = authorization.empty() ? TPM_ST_NO_SESSIONS : TPM_ST_SESSIONS; |
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UINT32 size = 10 + (handles.size() * 4) + authorization.size() + |
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parameters.size() + (authorization.empty() ? 0 : 4); |
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Serialize_TPM_ST(tag, &buffer); |
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Serialize_UINT32(size, &buffer); |
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Serialize_TPM_CC(code, &buffer); |
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for (auto handle : handles) { |
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Serialize_TPM_HANDLE(handle, &buffer); |
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} |
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if (!authorization.empty()) { |
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Serialize_UINT32(authorization.size(), &buffer); |
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} |
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return buffer + authorization + parameters; |
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} |
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// Builds a well-formed response. |
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std::string CreateResponse(TPM_RC code, |
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const std::vector<TPM_HANDLE>& handles, |
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const std::string& authorization, |
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const std::string& parameters) { |
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std::string buffer; |
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TPM_ST tag = authorization.empty() ? TPM_ST_NO_SESSIONS : TPM_ST_SESSIONS; |
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UINT32 size = 10 + (handles.size() * 4) + authorization.size() + |
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parameters.size() + (authorization.empty() ? 0 : 4); |
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Serialize_TPM_ST(tag, &buffer); |
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Serialize_UINT32(size, &buffer); |
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Serialize_TPM_RC(code, &buffer); |
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for (auto handle : handles) { |
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Serialize_TPM_HANDLE(handle, &buffer); |
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} |
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if (!authorization.empty()) { |
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Serialize_UINT32(parameters.size(), &buffer); |
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} |
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return buffer + parameters + authorization; |
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} |
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// Builds a well-formed command authorization section. |
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std::string CreateCommandAuthorization(TPM_HANDLE handle, |
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bool continue_session) { |
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std::string buffer; |
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Serialize_TPM_HANDLE(handle, &buffer); |
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Serialize_TPM2B_NONCE(Make_TPM2B_DIGEST(std::string(32, 'A')), &buffer); |
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Serialize_BYTE(continue_session ? 1 : 0, &buffer); |
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Serialize_TPM2B_DIGEST(Make_TPM2B_DIGEST(std::string(32, 'B')), &buffer); |
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return buffer; |
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} |
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// Builds a well-formed response authorization section. |
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std::string CreateResponseAuthorization(bool continue_session) { |
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std::string buffer; |
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Serialize_TPM2B_NONCE(Make_TPM2B_DIGEST(std::string(32, 'A')), &buffer); |
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Serialize_BYTE(continue_session ? 1 : 0, &buffer); |
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Serialize_TPM2B_DIGEST(Make_TPM2B_DIGEST(std::string(32, 'B')), &buffer); |
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return buffer; |
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} |
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std::string GetHeader(const std::string& message) { |
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return message.substr(0, 10); |
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} |
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std::string StripHeader(const std::string& message) { |
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return message.substr(10); |
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} |
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// Makes the resource manager aware of a transient object handle and returns |
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// the newly associated virtual handle. |
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TPM_HANDLE LoadHandle(TPM_HANDLE handle) { |
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std::vector<TPM_HANDLE> input_handles = {PERSISTENT_FIRST}; |
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std::string command = CreateCommand(TPM_CC_Load, input_handles, |
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kNoAuthorization, kNoParameters); |
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std::vector<TPM_HANDLE> output_handles = {handle}; |
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std::string response = CreateResponse(TPM_RC_SUCCESS, output_handles, |
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kNoAuthorization, kNoParameters); |
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EXPECT_CALL(transceiver_, SendCommandAndWait(command)) |
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.WillOnce(Return(response)); |
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std::string actual_response = resource_manager_.SendCommandAndWait(command); |
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std::string handle_blob = StripHeader(actual_response); |
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TPM_HANDLE virtual_handle; |
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CHECK_EQ(TPM_RC_SUCCESS, |
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Parse_TPM_HANDLE(&handle_blob, &virtual_handle, NULL)); |
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return virtual_handle; |
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} |
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// Causes the resource manager to evict existing object handles. |
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void EvictObjects() { |
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std::string command = CreateCommand(TPM_CC_Startup, kNoHandles, |
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kNoAuthorization, kNoParameters); |
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std::string response = CreateErrorResponse(TPM_RC_OBJECT_MEMORY); |
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std::string success_response = CreateResponse( |
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TPM_RC_SUCCESS, kNoHandles, kNoAuthorization, kNoParameters); |
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EXPECT_CALL(transceiver_, SendCommandAndWait(_)) |
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.WillOnce(Return(response)) |
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.WillRepeatedly(Return(success_response)); |
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EXPECT_CALL(tpm_, ContextSaveSync(_, _, _, _)) |
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.WillRepeatedly(Return(TPM_RC_SUCCESS)); |
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EXPECT_CALL(tpm_, FlushContextSync(_, _)) |
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.WillRepeatedly(Return(TPM_RC_SUCCESS)); |
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resource_manager_.SendCommandAndWait(command); |
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} |
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// Makes the resource manager aware of a session handle. |
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void StartSession(TPM_HANDLE handle) { |
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std::vector<TPM_HANDLE> input_handles = {1, 2}; |
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std::string command = CreateCommand(TPM_CC_StartAuthSession, input_handles, |
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kNoAuthorization, kNoParameters); |
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std::vector<TPM_HANDLE> output_handles = {handle}; |
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std::string response = CreateResponse(TPM_RC_SUCCESS, output_handles, |
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kNoAuthorization, kNoParameters); |
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EXPECT_CALL(transceiver_, SendCommandAndWait(command)) |
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.WillOnce(Return(response)); |
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std::string actual_response = resource_manager_.SendCommandAndWait(command); |
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ASSERT_EQ(response, actual_response); |
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} |
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// Causes the resource manager to evict an existing session handle. |
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void EvictSession() { |
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std::string command = CreateCommand(TPM_CC_Startup, kNoHandles, |
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kNoAuthorization, kNoParameters); |
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std::string response = CreateErrorResponse(TPM_RC_SESSION_MEMORY); |
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std::string success_response = CreateResponse( |
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TPM_RC_SUCCESS, kNoHandles, kNoAuthorization, kNoParameters); |
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EXPECT_CALL(transceiver_, SendCommandAndWait(_)) |
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.WillOnce(Return(response)) |
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.WillRepeatedly(Return(success_response)); |
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EXPECT_CALL(tpm_, ContextSaveSync(_, _, _, _)) |
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.WillOnce(Return(TPM_RC_SUCCESS)); |
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resource_manager_.SendCommandAndWait(command); |
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} |
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// Creates a TPMS_CONTEXT with the given sequence field. |
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TPMS_CONTEXT CreateContext(UINT64 sequence) { |
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TPMS_CONTEXT context; |
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memset(&context, 0, sizeof(context)); |
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context.sequence = sequence; |
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return context; |
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} |
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// Creates a serialized TPMS_CONTEXT with the given sequence field. |
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std::string CreateContextParameter(UINT64 sequence) { |
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std::string buffer; |
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Serialize_TPMS_CONTEXT(CreateContext(sequence), &buffer); |
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return buffer; |
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} |
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protected: |
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StrictMock<MockTpm> tpm_; |
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TrunksFactoryForTest factory_; |
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StrictMock<MockCommandTransceiver> transceiver_; |
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ResourceManager resource_manager_; |
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}; |
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TEST_F(ResourceManagerTest, BasicPassThrough) { |
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std::string command = CreateCommand(TPM_CC_Startup, kNoHandles, |
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kNoAuthorization, kNoParameters); |
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std::string response = CreateResponse(TPM_RC_SUCCESS, kNoHandles, |
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kNoAuthorization, kNoParameters); |
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EXPECT_CALL(transceiver_, SendCommandAndWait(command)) |
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.WillOnce(Return(response)); |
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std::string actual_response = resource_manager_.SendCommandAndWait(command); |
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EXPECT_EQ(actual_response, response); |
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} |
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TEST_F(ResourceManagerTest, BasicPassThroughAsync) { |
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std::string command = CreateCommand(TPM_CC_Startup, kNoHandles, |
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kNoAuthorization, kNoParameters); |
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std::string response = CreateResponse(TPM_RC_SUCCESS, kNoHandles, |
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kNoAuthorization, kNoParameters); |
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EXPECT_CALL(transceiver_, SendCommandAndWait(command)) |
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.WillOnce(Return(response)); |
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std::string actual_response; |
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CommandTransceiver::ResponseCallback callback = |
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base::Bind(&Assign, &actual_response); |
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resource_manager_.SendCommand(command, callback); |
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EXPECT_EQ(actual_response, response); |
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} |
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TEST_F(ResourceManagerTest, VirtualHandleOutput) { |
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std::vector<TPM_HANDLE> input_handles = {PERSISTENT_FIRST}; |
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std::string command = CreateCommand(TPM_CC_Load, input_handles, |
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kNoAuthorization, kNoParameters); |
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std::vector<TPM_HANDLE> output_handles = {kArbitraryObjectHandle}; |
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std::string response = CreateResponse(TPM_RC_SUCCESS, output_handles, |
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kNoAuthorization, kNoParameters); |
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EXPECT_CALL(transceiver_, SendCommandAndWait(command)) |
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.WillOnce(Return(response)); |
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std::string actual_response = resource_manager_.SendCommandAndWait(command); |
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EXPECT_EQ(response.size(), actual_response.size()); |
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// We expect the resource manager has replaced the output handle with a |
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// virtual handle (which we can't predict, but it's unlikely to be the same as |
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// the handle emitted by the mock). |
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EXPECT_EQ(GetHeader(response), GetHeader(actual_response)); |
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EXPECT_NE(StripHeader(response), StripHeader(actual_response)); |
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TPM_HT handle_type = static_cast<TPM_HT>(StripHeader(actual_response)[0]); |
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EXPECT_EQ(TPM_HT_TRANSIENT, handle_type); |
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} |
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TEST_F(ResourceManagerTest, VirtualHandleInput) { |
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TPM_HANDLE tpm_handle = kArbitraryObjectHandle; |
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TPM_HANDLE virtual_handle = LoadHandle(tpm_handle); |
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std::vector<TPM_HANDLE> input_handles = {virtual_handle}; |
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std::string command = CreateCommand(TPM_CC_Sign, input_handles, |
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kNoAuthorization, kNoParameters); |
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// We expect the resource manager to replace |virtual_handle| with |
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// |tpm_handle|. |
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std::vector<TPM_HANDLE> expected_input_handles = {tpm_handle}; |
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std::string expected_command = CreateCommand( |
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TPM_CC_Sign, expected_input_handles, kNoAuthorization, kNoParameters); |
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std::string response = CreateResponse(TPM_RC_SUCCESS, kNoHandles, |
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kNoAuthorization, kNoParameters); |
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EXPECT_CALL(transceiver_, SendCommandAndWait(expected_command)) |
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.WillOnce(Return(response)); |
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std::string actual_response = resource_manager_.SendCommandAndWait(command); |
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EXPECT_EQ(response, actual_response); |
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} |
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TEST_F(ResourceManagerTest, VirtualHandleCleanup) { |
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TPM_HANDLE tpm_handle = kArbitraryObjectHandle; |
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TPM_HANDLE virtual_handle = LoadHandle(tpm_handle); |
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std::string parameters; |
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Serialize_TPM_HANDLE(virtual_handle, ¶meters); |
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std::string command = CreateCommand(TPM_CC_FlushContext, kNoHandles, |
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kNoAuthorization, parameters); |
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std::string expected_parameters; |
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Serialize_TPM_HANDLE(tpm_handle, &expected_parameters); |
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std::string expected_command = CreateCommand( |
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TPM_CC_FlushContext, kNoHandles, kNoAuthorization, expected_parameters); |
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std::string response = CreateResponse(TPM_RC_SUCCESS, kNoHandles, |
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kNoAuthorization, kNoParameters); |
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EXPECT_CALL(transceiver_, SendCommandAndWait(expected_command)) |
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.WillOnce(Return(response)); |
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std::string actual_response = resource_manager_.SendCommandAndWait(command); |
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EXPECT_EQ(response, actual_response); |
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// Now we expect there to be no record of |virtual_handle|. |
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std::vector<TPM_HANDLE> input_handles = {virtual_handle}; |
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command = CreateCommand(TPM_CC_Sign, input_handles, kNoAuthorization, |
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kNoParameters); |
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response = CreateErrorResponse(TPM_RC_HANDLE | kResourceManagerTpmErrorBase); |
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actual_response = resource_manager_.SendCommandAndWait(command); |
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EXPECT_EQ(response, actual_response); |
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// Try again but attempt to flush |tpm_handle| instead of |virtual_handle|. |
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virtual_handle = LoadHandle(tpm_handle); |
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parameters.clear(); |
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Serialize_TPM_HANDLE(tpm_handle, ¶meters); |
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command = CreateCommand(TPM_CC_FlushContext, kNoHandles, kNoAuthorization, |
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parameters); |
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actual_response = resource_manager_.SendCommandAndWait(command); |
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// TPM_RC_HANDLE also expected here. |
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EXPECT_EQ(response, actual_response); |
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} |
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TEST_F(ResourceManagerTest, VirtualHandleLoadBeforeUse) { |
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TPM_HANDLE tpm_handle = kArbitraryObjectHandle; |
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TPM_HANDLE virtual_handle = LoadHandle(tpm_handle); |
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EvictObjects(); |
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std::vector<TPM_HANDLE> input_handles = {virtual_handle}; |
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std::string command = CreateCommand(TPM_CC_Sign, input_handles, |
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kNoAuthorization, kNoParameters); |
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std::vector<TPM_HANDLE> expected_input_handles = {tpm_handle}; |
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std::string expected_command = CreateCommand( |
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TPM_CC_Sign, expected_input_handles, kNoAuthorization, kNoParameters); |
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std::string response = CreateResponse(TPM_RC_SUCCESS, kNoHandles, |
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kNoAuthorization, kNoParameters); |
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EXPECT_CALL(tpm_, ContextLoadSync(_, _, _)).WillOnce(Return(TPM_RC_SUCCESS)); |
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EXPECT_CALL(transceiver_, SendCommandAndWait(expected_command)) |
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.WillOnce(Return(response)); |
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std::string actual_response = resource_manager_.SendCommandAndWait(command); |
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EXPECT_EQ(response, actual_response); |
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} |
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TEST_F(ResourceManagerTest, InvalidVirtualHandle) { |
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std::vector<TPM_HANDLE> input_handles = {kArbitraryObjectHandle}; |
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std::string command = CreateCommand(TPM_CC_Sign, input_handles, |
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kNoAuthorization, kNoParameters); |
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std::string response = |
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CreateErrorResponse(TPM_RC_HANDLE | kResourceManagerTpmErrorBase); |
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std::string actual_response = resource_manager_.SendCommandAndWait(command); |
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EXPECT_EQ(response, actual_response); |
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} |
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TEST_F(ResourceManagerTest, SimpleFuzzInputParser) { |
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std::vector<TPM_HANDLE> handles = {1, 2}; |
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std::string parameters = "12345"; |
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std::string command = |
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CreateCommand(TPM_CC_StartAuthSession, handles, |
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CreateCommandAuthorization(kArbitrarySessionHandle, |
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true), // continue_session |
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parameters); |
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// We don't care about what happens, only that it doesn't crash. |
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EXPECT_CALL(transceiver_, SendCommandAndWait(_)) |
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.WillRepeatedly(Return(CreateErrorResponse(TPM_RC_FAILURE))); |
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ScopedDisableLogging no_logging; |
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for (size_t i = 0; i < command.size(); ++i) { |
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resource_manager_.SendCommandAndWait(command.substr(0, i)); |
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resource_manager_.SendCommandAndWait(command.substr(i)); |
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std::string fuzzed_command(command); |
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for (uint8_t value = 0;; value++) { |
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fuzzed_command[i] = static_cast<char>(value); |
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resource_manager_.SendCommandAndWait(fuzzed_command); |
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if (value == 255) { |
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break; |
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} |
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} |
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} |
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} |
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TEST_F(ResourceManagerTest, SimpleFuzzOutputParser) { |
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std::vector<TPM_HANDLE> handles = {1, 2}; |
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std::string parameters = "12345"; |
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std::string command = |
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CreateCommand(TPM_CC_StartAuthSession, handles, |
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CreateCommandAuthorization(kArbitrarySessionHandle, |
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true), // continue_session |
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parameters); |
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std::vector<TPM_HANDLE> out_handles = {3}; |
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std::string response = |
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CreateResponse(TPM_RC_SUCCESS, out_handles, |
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CreateResponseAuthorization(true), // continue_session |
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parameters); |
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std::string fuzzed_response; |
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EXPECT_CALL(transceiver_, SendCommandAndWait(_)) |
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.WillRepeatedly(ReturnPointee(&fuzzed_response)); |
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ScopedDisableLogging no_logging; |
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for (size_t i = 0; i < response.size(); ++i) { |
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fuzzed_response = response.substr(0, i); |
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resource_manager_.SendCommandAndWait(command); |
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fuzzed_response = response.substr(i); |
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resource_manager_.SendCommandAndWait(command); |
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fuzzed_response = response; |
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for (uint8_t value = 0;; value++) { |
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fuzzed_response[i] = static_cast<char>(value); |
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resource_manager_.SendCommandAndWait(command); |
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if (value == 255) { |
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break; |
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} |
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} |
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fuzzed_response[i] = response[i]; |
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} |
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} |
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TEST_F(ResourceManagerTest, NewSession) { |
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StartSession(kArbitrarySessionHandle); |
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std::string command = |
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CreateCommand(TPM_CC_Startup, kNoHandles, |
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CreateCommandAuthorization(kArbitrarySessionHandle, |
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true), // continue_session |
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kNoParameters); |
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std::string response = |
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CreateResponse(TPM_RC_SUCCESS, kNoHandles, |
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CreateResponseAuthorization(true), // continue_session |
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kNoParameters); |
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EXPECT_CALL(transceiver_, SendCommandAndWait(command)) |
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.WillOnce(Return(response)); |
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std::string actual_response = resource_manager_.SendCommandAndWait(command); |
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EXPECT_EQ(response, actual_response); |
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} |
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TEST_F(ResourceManagerTest, DiscontinuedSession) { |
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StartSession(kArbitrarySessionHandle); |
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// Use the session but do not continue. |
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std::string command = |
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CreateCommand(TPM_CC_Startup, kNoHandles, |
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CreateCommandAuthorization(kArbitrarySessionHandle, |
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false), // continue_session |
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kNoParameters); |
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std::string response = |
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CreateResponse(TPM_RC_SUCCESS, kNoHandles, |
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CreateResponseAuthorization(false), // continue_session |
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kNoParameters); |
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EXPECT_CALL(transceiver_, SendCommandAndWait(command)) |
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.WillOnce(Return(response)); |
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std::string actual_response = resource_manager_.SendCommandAndWait(command); |
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EXPECT_EQ(response, actual_response); |
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// Now attempt to use it again and expect a handle error. |
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response = CreateErrorResponse(TPM_RC_HANDLE | kResourceManagerTpmErrorBase); |
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actual_response = resource_manager_.SendCommandAndWait(command); |
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EXPECT_EQ(response, actual_response); |
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} |
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TEST_F(ResourceManagerTest, LoadSessionBeforeUse) { |
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StartSession(kArbitrarySessionHandle); |
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EvictSession(); |
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std::string command = |
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CreateCommand(TPM_CC_Startup, kNoHandles, |
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CreateCommandAuthorization(kArbitrarySessionHandle, |
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true), // continue_session |
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kNoParameters); |
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std::string response = |
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CreateResponse(TPM_RC_SUCCESS, kNoHandles, |
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CreateResponseAuthorization(true), // continue_session |
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kNoParameters); |
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EXPECT_CALL(transceiver_, SendCommandAndWait(command)) |
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.WillOnce(Return(response)); |
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EXPECT_CALL(tpm_, ContextLoadSync(_, _, _)).WillOnce(Return(TPM_RC_SUCCESS)); |
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std::string actual_response = resource_manager_.SendCommandAndWait(command); |
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EXPECT_EQ(response, actual_response); |
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} |
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|
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TEST_F(ResourceManagerTest, SessionHandleCleanup) { |
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StartSession(kArbitrarySessionHandle); |
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std::string parameters; |
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Serialize_TPM_HANDLE(kArbitrarySessionHandle, ¶meters); |
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std::string command = CreateCommand(TPM_CC_FlushContext, kNoHandles, |
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kNoAuthorization, parameters); |
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std::string response = CreateResponse(TPM_RC_SUCCESS, kNoHandles, |
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kNoAuthorization, kNoParameters); |
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EXPECT_CALL(transceiver_, SendCommandAndWait(command)) |
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.WillOnce(Return(response)); |
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std::string actual_response = resource_manager_.SendCommandAndWait(command); |
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EXPECT_EQ(response, actual_response); |
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// Now we expect there to be no record of |kArbitrarySessionHandle|. |
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command = CreateCommand(TPM_CC_Startup, kNoHandles, |
|
CreateCommandAuthorization(kArbitrarySessionHandle, |
|
true), // continue_session |
|
kNoParameters); |
|
response = CreateErrorResponse(TPM_RC_HANDLE | kResourceManagerTpmErrorBase); |
|
actual_response = resource_manager_.SendCommandAndWait(command); |
|
EXPECT_EQ(response, actual_response); |
|
} |
|
|
|
TEST_F(ResourceManagerTest, EvictWhenObjectInUse) { |
|
TPM_HANDLE tpm_handle = kArbitraryObjectHandle; |
|
TPM_HANDLE virtual_handle = LoadHandle(tpm_handle); |
|
TPM_HANDLE tpm_handle2 = kArbitraryObjectHandle + 1; |
|
LoadHandle(tpm_handle2); |
|
std::vector<TPM_HANDLE> input_handles = {virtual_handle}; |
|
std::string command = CreateCommand(TPM_CC_Sign, input_handles, |
|
kNoAuthorization, kNoParameters); |
|
// Trigger evict logic and verify |input_handles| are not evicted. |
|
std::string response = CreateErrorResponse(TPM_RC_OBJECT_MEMORY); |
|
std::string success_response = CreateResponse( |
|
TPM_RC_SUCCESS, kNoHandles, kNoAuthorization, kNoParameters); |
|
EXPECT_CALL(tpm_, ContextSaveSync(tpm_handle2, _, _, _)) |
|
.WillOnce(Return(TPM_RC_SUCCESS)); |
|
EXPECT_CALL(tpm_, FlushContextSync(tpm_handle2, _)) |
|
.WillOnce(Return(TPM_RC_SUCCESS)); |
|
EXPECT_CALL(transceiver_, SendCommandAndWait(_)) |
|
.WillOnce(Return(response)) |
|
.WillRepeatedly(Return(success_response)); |
|
std::string actual_response = resource_manager_.SendCommandAndWait(command); |
|
EXPECT_EQ(success_response, actual_response); |
|
} |
|
|
|
TEST_F(ResourceManagerTest, EvictWhenSessionInUse) { |
|
StartSession(kArbitrarySessionHandle); |
|
StartSession(kArbitrarySessionHandle + 1); |
|
std::string command = |
|
CreateCommand(TPM_CC_Startup, kNoHandles, |
|
CreateCommandAuthorization(kArbitrarySessionHandle, |
|
true), // continue_session |
|
kNoParameters); |
|
std::string response = |
|
CreateResponse(TPM_RC_SUCCESS, kNoHandles, |
|
CreateResponseAuthorization(true), // continue_session |
|
kNoParameters); |
|
std::string error_response = CreateErrorResponse(TPM_RC_SESSION_MEMORY); |
|
EXPECT_CALL(transceiver_, SendCommandAndWait(_)) |
|
.WillOnce(Return(error_response)) |
|
.WillRepeatedly(Return(response)); |
|
EXPECT_CALL(tpm_, ContextSaveSync(kArbitrarySessionHandle + 1, _, _, _)) |
|
.WillOnce(Return(TPM_RC_SUCCESS)); |
|
std::string actual_response = resource_manager_.SendCommandAndWait(command); |
|
EXPECT_EQ(response, actual_response); |
|
} |
|
|
|
TEST_F(ResourceManagerTest, EvictMultipleObjects) { |
|
const int kNumObjects = 10; |
|
std::map<TPM_HANDLE, TPM_HANDLE> handles; |
|
for (int i = 0; i < kNumObjects; ++i) { |
|
TPM_HANDLE handle = kArbitraryObjectHandle + i; |
|
handles[LoadHandle(handle)] = handle; |
|
} |
|
EvictObjects(); |
|
std::string response = CreateResponse(TPM_RC_SUCCESS, kNoHandles, |
|
kNoAuthorization, kNoParameters); |
|
EXPECT_CALL(tpm_, ContextLoadSync(_, _, _)) |
|
.Times(kNumObjects) |
|
.WillRepeatedly(Return(TPM_RC_SUCCESS)); |
|
EXPECT_CALL(transceiver_, SendCommandAndWait(_)) |
|
.WillRepeatedly(Return(response)); |
|
for (auto item : handles) { |
|
std::vector<TPM_HANDLE> input_handles = {item.first}; |
|
std::string command = CreateCommand(TPM_CC_Sign, input_handles, |
|
kNoAuthorization, kNoParameters); |
|
std::string actual_response = resource_manager_.SendCommandAndWait(command); |
|
EXPECT_EQ(response, actual_response); |
|
} |
|
} |
|
|
|
TEST_F(ResourceManagerTest, EvictMostStaleSession) { |
|
StartSession(kArbitrarySessionHandle); |
|
StartSession(kArbitrarySessionHandle + 1); |
|
StartSession(kArbitrarySessionHandle + 2); |
|
std::string response = |
|
CreateResponse(TPM_RC_SUCCESS, kNoHandles, |
|
CreateResponseAuthorization(true), // continue_session |
|
kNoParameters); |
|
EXPECT_CALL(transceiver_, SendCommandAndWait(_)) |
|
.WillRepeatedly(Return(response)); |
|
// Use the first two sessions, leaving the third as the most stale. |
|
for (int i = 0; i < 2; ++i) { |
|
std::string command = |
|
CreateCommand(TPM_CC_Startup, kNoHandles, |
|
CreateCommandAuthorization(kArbitrarySessionHandle + i, |
|
true), // continue_session |
|
kNoParameters); |
|
std::string actual_response = resource_manager_.SendCommandAndWait(command); |
|
EXPECT_EQ(response, actual_response); |
|
} |
|
EvictSession(); |
|
// EvictSession will have messed with the expectations; set them again. |
|
EXPECT_CALL(transceiver_, SendCommandAndWait(_)) |
|
.WillRepeatedly(Return(response)); |
|
// Use the first two sessions again, expecting no calls to ContextLoad. |
|
for (int i = 0; i < 2; ++i) { |
|
std::string command = |
|
CreateCommand(TPM_CC_Startup, kNoHandles, |
|
CreateCommandAuthorization(kArbitrarySessionHandle + i, |
|
true), // continue_session |
|
kNoParameters); |
|
std::string actual_response = resource_manager_.SendCommandAndWait(command); |
|
EXPECT_EQ(response, actual_response); |
|
} |
|
// Expect a call to ContextLoad if we use the third session. |
|
std::string command = |
|
CreateCommand(TPM_CC_Startup, kNoHandles, |
|
CreateCommandAuthorization(kArbitrarySessionHandle + 2, |
|
true), // continue_session |
|
kNoParameters); |
|
EXPECT_CALL(tpm_, ContextLoadSync(_, _, _)).WillOnce(Return(TPM_RC_SUCCESS)); |
|
std::string actual_response = resource_manager_.SendCommandAndWait(command); |
|
EXPECT_EQ(response, actual_response); |
|
} |
|
|
|
TEST_F(ResourceManagerTest, HandleContextGap) { |
|
const int kNumSessions = 7; |
|
const int kNumSessionsToUngap = 4; |
|
std::vector<TPM_HANDLE> expected_ungap_order; |
|
for (int i = 0; i < kNumSessions; ++i) { |
|
StartSession(kArbitrarySessionHandle + i); |
|
if (i < kNumSessionsToUngap) { |
|
EvictSession(); |
|
expected_ungap_order.push_back(kArbitrarySessionHandle + i); |
|
} |
|
} |
|
// Invoke a context gap. |
|
std::string command = CreateCommand(TPM_CC_Startup, kNoHandles, |
|
kNoAuthorization, kNoParameters); |
|
std::string response = CreateErrorResponse(TPM_RC_CONTEXT_GAP); |
|
std::string success_response = CreateResponse( |
|
TPM_RC_SUCCESS, kNoHandles, kNoAuthorization, kNoParameters); |
|
{ |
|
InSequence ungap_order; |
|
for (auto handle : expected_ungap_order) { |
|
EXPECT_CALL(tpm_, ContextLoadSync(_, _, _)) |
|
.WillOnce(Return(TPM_RC_SUCCESS)); |
|
EXPECT_CALL(tpm_, ContextSaveSync(handle, _, _, _)) |
|
.WillOnce(Return(TPM_RC_SUCCESS)); |
|
} |
|
} |
|
EXPECT_CALL(transceiver_, SendCommandAndWait(_)) |
|
.WillOnce(Return(response)) |
|
.WillRepeatedly(Return(success_response)); |
|
std::string actual_response = resource_manager_.SendCommandAndWait(command); |
|
EXPECT_EQ(success_response, actual_response); |
|
} |
|
|
|
TEST_F(ResourceManagerTest, ExternalContext) { |
|
StartSession(kArbitrarySessionHandle); |
|
// Do an external context save. |
|
std::vector<TPM_HANDLE> handles = {kArbitrarySessionHandle}; |
|
std::string context_save = CreateCommand(TPM_CC_ContextSave, handles, |
|
kNoAuthorization, kNoParameters); |
|
std::string context_parameter1 = CreateContextParameter(1); |
|
std::string context_save_response1 = CreateResponse( |
|
TPM_RC_SUCCESS, kNoHandles, kNoAuthorization, context_parameter1); |
|
EXPECT_CALL(transceiver_, SendCommandAndWait(context_save)) |
|
.WillOnce(Return(context_save_response1)); |
|
std::string actual_response = |
|
resource_manager_.SendCommandAndWait(context_save); |
|
EXPECT_EQ(context_save_response1, actual_response); |
|
|
|
// Invoke a context gap (which will cause context1 to be mapped to context2). |
|
EXPECT_CALL(tpm_, |
|
ContextLoadSync(Field(&TPMS_CONTEXT::sequence, Eq(1u)), _, _)) |
|
.WillOnce(Return(TPM_RC_SUCCESS)); |
|
EXPECT_CALL(tpm_, ContextSaveSync(kArbitrarySessionHandle, _, _, _)) |
|
.WillOnce(DoAll(SetArgumentPointee<2>(CreateContext(2)), |
|
Return(TPM_RC_SUCCESS))); |
|
std::string command = CreateCommand(TPM_CC_Startup, kNoHandles, |
|
kNoAuthorization, kNoParameters); |
|
std::string response = CreateErrorResponse(TPM_RC_CONTEXT_GAP); |
|
std::string success_response = CreateResponse( |
|
TPM_RC_SUCCESS, kNoHandles, kNoAuthorization, kNoParameters); |
|
EXPECT_CALL(transceiver_, SendCommandAndWait(command)) |
|
.WillOnce(Return(response)) |
|
.WillOnce(Return(success_response)); |
|
actual_response = resource_manager_.SendCommandAndWait(command); |
|
EXPECT_EQ(success_response, actual_response); |
|
|
|
// Now load external context1 and expect an actual load of context2. |
|
std::string context_load1 = CreateCommand( |
|
TPM_CC_ContextLoad, kNoHandles, kNoAuthorization, context_parameter1); |
|
std::string context_load2 = |
|
CreateCommand(TPM_CC_ContextLoad, kNoHandles, kNoAuthorization, |
|
CreateContextParameter(2)); |
|
std::string context_load_response = |
|
CreateResponse(TPM_RC_SUCCESS, handles, kNoAuthorization, kNoParameters); |
|
EXPECT_CALL(transceiver_, SendCommandAndWait(context_load2)) |
|
.WillOnce(Return(context_load_response)); |
|
actual_response = resource_manager_.SendCommandAndWait(context_load1); |
|
EXPECT_EQ(context_load_response, actual_response); |
|
} |
|
|
|
TEST_F(ResourceManagerTest, NestedFailures) { |
|
// The scenario being tested is when a command results in a warning to be |
|
// handled by the resource manager, and in the process of handling the first |
|
// warning another warning occurs which should be handled by the resource |
|
// manager, etc.. |
|
for (int i = 0; i < 3; ++i) { |
|
LoadHandle(kArbitraryObjectHandle + i); |
|
} |
|
EvictObjects(); |
|
for (int i = 3; i < 6; ++i) { |
|
LoadHandle(kArbitraryObjectHandle + i); |
|
} |
|
for (int i = 0; i < 10; ++i) { |
|
StartSession(kArbitrarySessionHandle + i); |
|
EvictSession(); |
|
} |
|
for (int i = 10; i < 20; ++i) { |
|
StartSession(kArbitrarySessionHandle + i); |
|
} |
|
std::string error_response = CreateErrorResponse(TPM_RC_MEMORY); |
|
EXPECT_CALL(transceiver_, SendCommandAndWait(_)) |
|
.WillRepeatedly(Return(error_response)); |
|
// The TPM_RC_MEMORY will result in a context save, make that fail too. |
|
EXPECT_CALL(tpm_, ContextSaveSync(_, _, _, _)) |
|
.WillRepeatedly(Return(TPM_RC_CONTEXT_GAP)); |
|
// The TPM_RC_CONTEXT_GAP will result in a context load. |
|
EXPECT_CALL(tpm_, ContextLoadSync(_, _, _)) |
|
.WillRepeatedly(Return(TPM_RC_SESSION_HANDLES)); |
|
// The TPM_RC_SESSION_HANDLES will result in a context flush. |
|
EXPECT_CALL(tpm_, FlushContextSync(_, _)) |
|
.WillRepeatedly(Return(TPM_RC_SESSION_MEMORY)); |
|
// The resource manager should not handle the same warning twice so we expect |
|
// the error of the original call to bubble up. |
|
std::string command = CreateCommand(TPM_CC_Startup, kNoHandles, |
|
kNoAuthorization, kNoParameters); |
|
std::string response = resource_manager_.SendCommandAndWait(command); |
|
EXPECT_EQ(error_response, response); |
|
} |
|
|
|
TEST_F(ResourceManagerTest, OutOfMemory) { |
|
std::string error_response = CreateErrorResponse(TPM_RC_MEMORY); |
|
EXPECT_CALL(transceiver_, SendCommandAndWait(_)) |
|
.WillRepeatedly(Return(error_response)); |
|
std::string command = CreateCommand(TPM_CC_Startup, kNoHandles, |
|
kNoAuthorization, kNoParameters); |
|
std::string response = resource_manager_.SendCommandAndWait(command); |
|
EXPECT_EQ(error_response, response); |
|
} |
|
|
|
TEST_F(ResourceManagerTest, ReentrantFixGap) { |
|
for (int i = 0; i < 3; ++i) { |
|
StartSession(kArbitrarySessionHandle + i); |
|
EvictSession(); |
|
} |
|
for (int i = 3; i < 6; ++i) { |
|
StartSession(kArbitrarySessionHandle + i); |
|
} |
|
std::string error_response = CreateErrorResponse(TPM_RC_CONTEXT_GAP); |
|
EXPECT_CALL(transceiver_, SendCommandAndWait(_)) |
|
.WillRepeatedly(Return(error_response)); |
|
EXPECT_CALL(tpm_, ContextSaveSync(_, _, _, _)) |
|
.WillRepeatedly(Return(TPM_RC_CONTEXT_GAP)); |
|
EXPECT_CALL(tpm_, ContextLoadSync(_, _, _)) |
|
.WillOnce(Return(TPM_RC_CONTEXT_GAP)) |
|
.WillRepeatedly(Return(TPM_RC_SUCCESS)); |
|
std::string command = CreateCommand(TPM_CC_Startup, kNoHandles, |
|
kNoAuthorization, kNoParameters); |
|
std::string response = resource_manager_.SendCommandAndWait(command); |
|
EXPECT_EQ(error_response, response); |
|
} |
|
|
|
TEST_F(ResourceManagerTest, PasswordAuthorization) { |
|
std::string command = |
|
CreateCommand(TPM_CC_Startup, kNoHandles, |
|
CreateCommandAuthorization(TPM_RS_PW, |
|
false), // continue_session |
|
kNoParameters); |
|
std::string response = |
|
CreateResponse(TPM_RC_SUCCESS, kNoHandles, |
|
CreateResponseAuthorization(false), // continue_session |
|
kNoParameters); |
|
EXPECT_CALL(transceiver_, SendCommandAndWait(command)) |
|
.WillOnce(Return(response)); |
|
std::string actual_response = resource_manager_.SendCommandAndWait(command); |
|
EXPECT_EQ(response, actual_response); |
|
} |
|
|
|
} // namespace trunks
|
|
|