Coverage for /Syzygy/trace/service/service_unittest.cc

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100.0%4084080.C++test

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   1    :  // Copyright 2012 Google Inc. All Rights Reserved.
   2    :  //
   3    :  // Licensed under the Apache License, Version 2.0 (the "License");
   4    :  // you may not use this file except in compliance with the License.
   5    :  // You may obtain a copy of the License at
   6    :  //
   7    :  //     http://www.apache.org/licenses/LICENSE-2.0
   8    :  //
   9    :  // Unless required by applicable law or agreed to in writing, software
  10    :  // distributed under the License is distributed on an "AS IS" BASIS,
  11    :  // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  12    :  // See the License for the specific language governing permissions and
  13    :  // limitations under the License.
  14    :  
  15    :  #include "syzygy/trace/service/service.h"
  16    :  
  17    :  #include <psapi.h>
  18    :  #include <userenv.h>
  19    :  
  20    :  #include "base/command_line.h"
  21    :  #include "base/environment.h"
  22    :  #include "base/files/file_enumerator.h"
  23    :  #include "base/files/file_util.h"
  24    :  #include "base/files/scoped_temp_dir.h"
  25    :  #include "base/memory/scoped_ptr.h"
  26    :  #include "base/process/kill.h"
  27    :  #include "base/process/launch.h"
  28    :  #include "base/strings/string_util.h"
  29    :  #include "base/strings/stringprintf.h"
  30    :  #include "base/strings/utf_string_conversions.h"
  31    :  #include "gmock/gmock.h"
  32    :  #include "gtest/gtest.h"
  33    :  #include "syzygy/common/align.h"
  34    :  #include "syzygy/common/rpc/helpers.h"
  35    :  #include "syzygy/core/unittest_util.h"
  36    :  #include "syzygy/trace/client/client_utils.h"
  37    :  #include "syzygy/trace/parse/parse_utils.h"
  38    :  #include "syzygy/trace/protocol/call_trace_defs.h"
  39    :  #include "syzygy/trace/service/service_rpc_impl.h"
  40    :  #include "syzygy/trace/service/session_trace_file_writer_factory.h"
  41    :  
  42    :  using ::common::rpc::InvokeRpc;
  43    :  using ::common::rpc::RpcStatus;
  44    :  using trace::client::TraceFileSegment;
  45    :  
  46    :  namespace trace {
  47    :  namespace service {
  48    :  
  49    :  namespace {
  50    :  
  51    :  using base::ProcessHandle;
  52    :  using base::TERMINATION_STATUS_STILL_RUNNING;
  53    :  using base::win::ScopedHandle;
  54    :  using ::common::AlignUp;
  55    :  using trace::parser::ParseEnvironmentStrings;
  56    :  using trace::parser::ParseTraceFileHeaderBlob;
  57    :  
  58    :  // Calculates the size of the given header on disk.
  59  E :  size_t RoundedSize(const TraceFileHeader& header) {
  60  E :    return AlignUp(header.header_size, header.block_size);
  61  E :  }
  62    :  
  63    :  class ScopedEnvironment {
  64    :   public:
  65  E :    ScopedEnvironment() {
  66  E :      env_ = ::GetEnvironmentStrings();
  67  E :      DCHECK(env_ != NULL);
  68  E :    }
  69    :  
  70  E :    ~ScopedEnvironment() {
  71  E :      ::FreeEnvironmentStrings(env_);
  72  E :    }
  73    :  
  74  E :    const wchar_t* Get() { return env_; }
  75    :  
  76    :   private:
  77    :    wchar_t* env_;
  78    :  };
  79    :  
  80    :  class CallTraceServiceTest : public testing::Test {
  81    :   public:
  82    :    typedef testing::Test Super;
  83    :  
  84    :    struct MyRecordType {
  85    :      enum { kTypeId = 0xBEEF };
  86    :      char message[128];
  87    :    };
  88    :  
  89    :    struct LargeRecordType {
  90    :      enum { kTypeId = 0xF00D };
  91    :      // This needs to be bigger than the default buffer size, which is
  92    :      // 2 MB.
  93    :      unsigned char binary_data[4 * 1024 * 1024];
  94    :    };
  95    :  
  96    :    CallTraceServiceTest()
  97    :        : consumer_thread_("profiler-test-consumer-thread"),
  98    :          consumer_thread_has_started_(
  99    :              consumer_thread_.StartWithOptions(
 100    :                  base::Thread::Options(base::MessageLoop::TYPE_IO, 0))),
 101    :          session_trace_file_writer_factory_(consumer_thread_.message_loop()),
 102    :          call_trace_service_(&session_trace_file_writer_factory_),
 103    :          rpc_service_instance_manager_(&call_trace_service_),
 104  E :          client_rpc_binding_(NULL) {
 105  E :    }
 106    :  
 107    :    // Sets up each test invocation.
 108  E :    void SetUp() override {
 109  E :      Super::SetUp();
 110    :  
 111  E :      ASSERT_TRUE(consumer_thread_has_started_);
 112    :  
 113    :      // Create a temporary directory for the call trace files.
 114  E :      ASSERT_TRUE(temp_dir_.CreateUniqueTempDir());
 115  E :      ASSERT_TRUE(session_trace_file_writer_factory_.SetTraceFileDirectory(
 116    :          temp_dir_.path()));
 117    :  
 118    :      // We give the service instance a "unique" id so that it does not interfere
 119    :      // with any other instances or tests that might be concurrently active.
 120  E :      instance_id_ = base::StringPrintf(L"%d", ::GetCurrentProcessId());
 121  E :      call_trace_service_.set_instance_id(instance_id_);
 122    :  
 123    :      // The instance id needs to be in the environment to be picked up by the
 124    :      // client library. We prefix the existing environment variable, if any.
 125  E :      scoped_ptr<base::Environment> env(base::Environment::Create());
 126  E :      ASSERT_FALSE(env.get() == NULL);
 127  E :      std::string env_var;
 128  E :      env->GetVar(::kSyzygyRpcInstanceIdEnvVar, &env_var);
 129  E :      env_var.insert(0, ";");
 130  E :      env_var.insert(0, base::WideToUTF8(instance_id_));
 131  E :      ASSERT_TRUE(env->SetVar(::kSyzygyRpcInstanceIdEnvVar, env_var));
 132  E :    }
 133    :  
 134    :    // Cleans up after each test invocation.
 135  E :    void TearDown() override {
 136  E :      FreeMappings();
 137    :  
 138  E :      if (client_rpc_binding_) {
 139  E :        ASSERT_EQ(RPC_S_OK, RpcBindingFree(&client_rpc_binding_));
 140    :      }
 141  E :      EXPECT_TRUE(call_trace_service_.Stop());
 142  E :      EXPECT_FALSE(call_trace_service_.is_running());
 143    :  
 144  E :      Super::TearDown();
 145  E :    }
 146    :  
 147  E :    void BindRPC() {
 148  E :      RPC_WSTR string_binding = NULL;
 149  E :      std::wstring protocol;
 150  E :      std::wstring endpoint;
 151    :  
 152  E :      ::GetSyzygyCallTraceRpcProtocol(&protocol);
 153  E :      ::GetSyzygyCallTraceRpcEndpoint(instance_id_, &endpoint);
 154    :  
 155  E :      ASSERT_TRUE(client_rpc_binding_ == 0);
 156    :  
 157  E :      ASSERT_EQ(RPC_S_OK,
 158    :                ::RpcStringBindingCompose(NULL,  // UUID.
 159    :                                          ::common::rpc::AsRpcWstr(&protocol[0]),
 160    :                                          NULL,  // Address.
 161    :                                          ::common::rpc::AsRpcWstr(&endpoint[0]),
 162    :                                          NULL,  // Options.
 163    :                                          &string_binding));
 164    :  
 165  E :      ASSERT_EQ(RPC_S_OK, ::RpcBindingFromStringBinding(string_binding,
 166    :                                                        &client_rpc_binding_));
 167    :  
 168  E :      ::RpcStringFree(&string_binding);
 169    :  
 170  E :      ASSERT_TRUE(client_rpc_binding_ != 0);
 171  E :    }
 172    :  
 173  E :    void MapSegmentBuffer(TraceFileSegment* segment) {
 174  E :      ASSERT_TRUE(segment != NULL);
 175    :  
 176    :      HANDLE mem_handle =
 177  E :          reinterpret_cast<HANDLE>(segment->buffer_info.shared_memory_handle);
 178  E :      uint8*& base_ptr = base_ptr_map_[mem_handle];
 179  E :      if (base_ptr == NULL) {
 180    :        base_ptr = reinterpret_cast<uint8*>(
 181    :            ::MapViewOfFile(mem_handle, FILE_MAP_WRITE, 0, 0,
 182  E :                            segment->buffer_info.mapping_size));
 183    :      }
 184  E :      ASSERT_TRUE(base_ptr != NULL);
 185    :  
 186  E :      segment->header = NULL; // A real client should write/init the header here.
 187  E :      segment->base_ptr = base_ptr;
 188  E :      segment->write_ptr = base_ptr + segment->buffer_info.buffer_offset;
 189  E :      segment->end_ptr = segment->write_ptr + segment->buffer_info.buffer_size;
 190  E :    }
 191    :  
 192  E :    void FreeMappings() {
 193  E :      BasePtrMap::iterator it = base_ptr_map_.begin();
 194  E :      for (; it != base_ptr_map_.end(); ++it)
 195  E :        ::UnmapViewOfFile(it->second);
 196  E :      base_ptr_map_.clear();
 197  E :    }
 198    :  
 199    :    void CreateSession(SessionHandle* session_handle,
 200  E :                       TraceFileSegment* segment) {
 201  E :      ASSERT_TRUE(segment != NULL);
 202  E :      ZeroMemory(segment, sizeof(*segment));
 203  E :      BindRPC();
 204    :  
 205  E :      unsigned long flags = 0;
 206    :      RpcStatus status = InvokeRpc(CallTraceClient_CreateSession,
 207    :                                   client_rpc_binding_,
 208    :                                   session_handle,
 209    :                                   &segment->buffer_info,
 210  E :                                   &flags);
 211    :  
 212  E :      ASSERT_FALSE(status.exception_occurred);
 213  E :      ASSERT_TRUE(status.result);
 214    :  
 215  E :      MapSegmentBuffer(segment);
 216  E :    }
 217    :  
 218    :    void AllocateBuffer(SessionHandle session_handle,
 219  E :                        TraceFileSegment* segment) {
 220    :      RpcStatus status = InvokeRpc(CallTraceClient_AllocateBuffer,
 221    :                                   session_handle,
 222  E :                                   &segment->buffer_info);
 223    :  
 224  E :      ASSERT_FALSE(status.exception_occurred);
 225  E :      ASSERT_TRUE(status.result);
 226    :  
 227  E :      MapSegmentBuffer(segment);
 228  E :    }
 229    :  
 230    :    void AllocateLargeBuffer(SessionHandle session_handle,
 231    :                             size_t minimum_size,
 232  E :                             TraceFileSegment* segment) {
 233    :      RpcStatus status = InvokeRpc(CallTraceClient_AllocateLargeBuffer,
 234    :                                   session_handle,
 235    :                                   minimum_size,
 236  E :                                   &segment->buffer_info);
 237    :  
 238  E :      ASSERT_FALSE(status.exception_occurred);
 239  E :      ASSERT_TRUE(status.result);
 240    :  
 241  E :      MapSegmentBuffer(segment);
 242  E :    }
 243    :  
 244    :    void ExchangeBuffer(SessionHandle session_handle,
 245  E :                        TraceFileSegment* segment) {
 246    :      RpcStatus status = InvokeRpc(CallTraceClient_ExchangeBuffer,
 247    :                                   session_handle,
 248  E :                                   &segment->buffer_info);
 249    :  
 250  E :      ASSERT_FALSE(status.exception_occurred);
 251  E :      ASSERT_TRUE(status.result);
 252    :  
 253  E :      MapSegmentBuffer(segment);
 254  E :    }
 255    :  
 256    :    void ReturnBuffer(SessionHandle session_handle,
 257  E :                      TraceFileSegment* segment) {
 258    :      RpcStatus status = InvokeRpc(CallTraceClient_ReturnBuffer,
 259    :                                   session_handle,
 260  E :                                   &segment->buffer_info);
 261    :  
 262  E :      ASSERT_FALSE(status.exception_occurred);
 263  E :      ASSERT_TRUE(status.result);
 264    :  
 265    :      CallTraceBuffer zeroes;
 266  E :      ZeroMemory(&zeroes, sizeof(zeroes));
 267  E :      ASSERT_EQ(0, ::memcmp(&segment->buffer_info, &zeroes, sizeof(zeroes)));
 268    :  
 269  E :      segment->write_ptr = NULL;
 270  E :      segment->end_ptr = NULL;
 271  E :      segment->header = NULL;
 272  E :    }
 273    :  
 274  E :    void CloseSession(SessionHandle* session_handle) {
 275    :      // Free all outstanding mappings associated with this session.
 276  E :      FreeMappings();
 277    :  
 278    :      RpcStatus status = InvokeRpc(CallTraceClient_CloseSession,
 279  E :                                   session_handle);
 280    :  
 281  E :      ASSERT_FALSE(status.exception_occurred);
 282  E :      ASSERT_TRUE(status.result);
 283    :  
 284  E :      ASSERT_TRUE(*session_handle == NULL);
 285  E :    }
 286    :  
 287  E :    void ReadTraceFile(std::string* contents) {
 288    :      base::FileEnumerator enumerator(temp_dir_.path(),
 289    :                                      false,
 290    :                                      base::FileEnumerator::FILES,
 291  E :                                      L"trace-*.bin");
 292  E :      base::FilePath trace_file_name(enumerator.Next());
 293  E :      ASSERT_FALSE(trace_file_name.empty());
 294  E :      ASSERT_TRUE(enumerator.Next().empty());
 295  E :      ASSERT_TRUE(base::ReadFileToString(trace_file_name, contents));
 296  E :    }
 297    :  
 298  E :    void ValidateTraceFileHeader(const TraceFileHeader& header) {
 299  E :      std::wstring cmd_line(::GetCommandLineW());
 300    :  
 301    :      wchar_t module_path[MAX_PATH];
 302  E :      ASSERT_TRUE(::GetModuleFileName(NULL,
 303    :                                      &module_path[0],
 304    :                                      arraysize(module_path)));
 305    :  
 306    :      MODULEINFO module_info;
 307  E :      ASSERT_TRUE(::GetModuleInformation(::GetCurrentProcess(),
 308    :                                         ::GetModuleHandle(NULL),
 309    :                                         &module_info,
 310    :                                         sizeof(module_info)));
 311    :  
 312  E :      ScopedEnvironment env_;
 313  E :      TraceEnvironmentStrings env_strings;
 314  E :      ASSERT_TRUE(ParseEnvironmentStrings(env_.Get(), &env_strings));
 315    :  
 316    :      // Parse the blob at the end of the header, and make sure its parsable.
 317  E :      std::wstring blob_module_path;
 318  E :      std::wstring blob_command_line;
 319  E :      TraceEnvironmentStrings blob_env_strings;
 320  E :      ASSERT_TRUE(ParseTraceFileHeaderBlob(header,
 321    :                                           &blob_module_path,
 322    :                                           &blob_command_line,
 323    :                                           &blob_env_strings));
 324    :  
 325  E :      ASSERT_EQ(header.server_version.hi, TRACE_VERSION_HI);
 326  E :      ASSERT_EQ(header.server_version.lo, TRACE_VERSION_LO);
 327  E :      ASSERT_EQ(header.process_id, ::GetCurrentProcessId());
 328  E :      ASSERT_EQ(header.module_base_address,
 329    :                reinterpret_cast<uint32>(module_info.lpBaseOfDll));
 330  E :      ASSERT_EQ(header.module_size,
 331    :                static_cast<uint32>(module_info.SizeOfImage));
 332    :  
 333  E :      ASSERT_EQ(blob_module_path, std::wstring(module_path));
 334  E :      ASSERT_EQ(blob_command_line, cmd_line);
 335  E :      ASSERT_THAT(blob_env_strings, ::testing::ContainerEq(env_strings));
 336  E :    }
 337    :  
 338    :  
 339    :    // The thread on which the trace file writer will consumer buffers and a
 340    :    // helper variable whose initialization we use as a trigger to start the
 341    :    // thread (ensuring its message_loop is created). These declarations MUST
 342    :    // remain in this order and preceed that of trace_file_writer_factory_;
 343    :    base::Thread consumer_thread_;
 344    :    bool consumer_thread_has_started_;
 345    :  
 346    :    // The call trace service related objects. These declarations MUST be in
 347    :    // this order.
 348    :    SessionTraceFileWriterFactory session_trace_file_writer_factory_;
 349    :    Service call_trace_service_;
 350    :    RpcServiceInstanceManager rpc_service_instance_manager_;
 351    :  
 352    :    // The directory where trace file output will be written.
 353    :    base::ScopedTempDir temp_dir_;
 354    :  
 355    :    // We give each service instance a "unique" id so that it doesn't interfere
 356    :    // with any other concurrrently running instances or tests.
 357    :    std::wstring instance_id_;
 358    :  
 359    :    // The client rpc binding.
 360    :    handle_t client_rpc_binding_;
 361    :  
 362    :    // A map to track the base pointers for the buffers returned from the call
 363    :    // trace service.
 364    :    typedef std::map<HANDLE, uint8*> BasePtrMap;
 365    :    BasePtrMap base_ptr_map_;
 366    :  };
 367    :  
 368    :  template<typename T1, typename T2>
 369  E :  inline ptrdiff_t RawPtrDiff(const T1* p1, const T2* p2) {
 370  E :    const uint8* const u1 = reinterpret_cast<const uint8*>(p1);
 371  E :    const uint8* const u2 = reinterpret_cast<const uint8*>(p2);
 372  E :    return u1 - u2;
 373  E :  }
 374    :  
 375    :  void ControlExternalCallTraceService(const std::string& command,
 376    :                                       const std::wstring& instance_id_,
 377  E :                                       base::Process* process) {
 378  E :    ASSERT_TRUE(command == "start" || command == "stop");
 379  E :    ASSERT_FALSE(instance_id_.empty());
 380  E :    ASSERT_NE(static_cast<base::Process*>(nullptr), process);
 381    :  
 382    :    base::CommandLine cmd_line(
 383  E :        testing::GetExeRelativePath(L"call_trace_service.exe"));
 384  E :    cmd_line.AppendArg(command);
 385  E :    cmd_line.AppendSwitchNative("instance-id", instance_id_);
 386    :  
 387  E :    base::LaunchOptions options;
 388  E :    *process = base::LaunchProcess(cmd_line, options);
 389  E :    ASSERT_TRUE(process->IsValid());
 390  E :  }
 391    :  
 392    :  void StartExternalCallTraceService(const std::wstring& instance_id_,
 393  E :                                     base::Process* process) {
 394  E :    ControlExternalCallTraceService("start", instance_id_, process);
 395  E :  }
 396    :  
 397    :  void StopExternalCallTraceService(const std::wstring& instance_id_,
 398  E :                                    base::Process* process) {
 399  E :    ASSERT_NE(static_cast<base::Process*>(nullptr), process);
 400  E :    base::Process controller_process;
 401  E :    ControlExternalCallTraceService("stop", instance_id_, &controller_process);
 402    :  
 403  E :    static base::TimeDelta k30Seconds = base::TimeDelta::FromSeconds(30);
 404    :    int exit_code;
 405    :    EXPECT_TRUE(
 406  E :        controller_process.WaitForExitWithTimeout(k30Seconds, &exit_code));
 407  E :    EXPECT_EQ(0, exit_code);
 408    :  
 409  E :    EXPECT_TRUE(process->WaitForExitWithTimeout(k30Seconds, &exit_code));
 410  E :    EXPECT_EQ(0, exit_code);
 411  E :  }
 412    :  
 413  E :  void CheckIsStillRunning(ProcessHandle handle) {
 414  E :    ::Sleep(1000);
 415    :  
 416  E :    int exit_code = 0;
 417    :    base::TerminationStatus status = base::GetTerminationStatus(handle,
 418  E :                                                                &exit_code);
 419    :  
 420  E :    ASSERT_EQ(TERMINATION_STATUS_STILL_RUNNING, status);
 421  E :    ASSERT_EQ(WAIT_TIMEOUT, exit_code);
 422  E :  }
 423    :  
 424    :  }  // namespace
 425    :  
 426  E :  TEST_F(CallTraceServiceTest, StartStop) {
 427  E :    EXPECT_TRUE(call_trace_service_.Start(true));
 428  E :    EXPECT_TRUE(call_trace_service_.Stop());
 429  E :  }
 430    :  
 431  E :  TEST_F(CallTraceServiceTest, StartFailsIfEventNameOccupied) {
 432  E :    std::wstring event_name;
 433  E :    ::GetSyzygyCallTraceRpcEventName(instance_id_, &event_name);
 434    :  
 435    :    // Create a mutex with the event name, to thwart the event creation.
 436    :    base::win::ScopedHandle mutex(
 437  E :        ::CreateMutex(NULL, FALSE, event_name.c_str()));
 438    :  
 439  E :    EXPECT_FALSE(call_trace_service_.Start(true));
 440  E :  }
 441    :  
 442  E :  TEST_F(CallTraceServiceTest, StartSetsStopResetsEvent) {
 443  E :    std::wstring event_name;
 444  E :    ::GetSyzygyCallTraceRpcEventName(instance_id_, &event_name);
 445    :  
 446    :    // Create the event and make sure it's not set.
 447    :    base::win::ScopedHandle event(
 448  E :        ::CreateEvent(NULL, FALSE, FALSE, event_name.c_str()));
 449    :  
 450  E :    EXPECT_TRUE(call_trace_service_.Start(true));
 451    :  
 452  E :    ASSERT_EQ(WAIT_OBJECT_0, ::WaitForSingleObject(event.Get(), 0));
 453    :  
 454  E :    EXPECT_TRUE(call_trace_service_.Stop());
 455    :  
 456  E :    ASSERT_EQ(WAIT_TIMEOUT, ::WaitForSingleObject(event.Get(), 0));
 457  E :  }
 458    :  
 459  E :  TEST_F(CallTraceServiceTest, IsSingletonPerInstanceId) {
 460    :    // Create a new instance id to use for this test.
 461  E :    std::wstring duplicate_id = instance_id_ + L"-foo";
 462    :  
 463    :    // Start an external service with the new instance id.
 464  E :    base::Process process;
 465    :    ASSERT_NO_FATAL_FAILURE(StartExternalCallTraceService(duplicate_id,
 466  E :                                                          &process));
 467  E :    ASSERT_NO_FATAL_FAILURE(CheckIsStillRunning(process.Handle()));
 468    :  
 469    :    // Create a new local service instance and see if it starts. We use a new
 470    :    // instance to pick up the new instance id and to make sure any state in
 471    :    // the static service instance doesn't compromise the test.
 472  E :    Service local_call_trace_service(&session_trace_file_writer_factory_);
 473  E :    local_call_trace_service.set_instance_id(duplicate_id);
 474  E :    EXPECT_FALSE(local_call_trace_service.Start(true));
 475  E :    EXPECT_TRUE(local_call_trace_service.Stop());
 476    :  
 477    :    // The external instance should still be running.
 478  E :    CheckIsStillRunning(process.Handle());
 479  E :    StopExternalCallTraceService(duplicate_id, &process);
 480  E :  }
 481    :  
 482  E :  TEST_F(CallTraceServiceTest, IsConcurrentWithDifferentInstanceId) {
 483    :    // Create new instance ids "bar-1" and "bar-2" to use for the external
 484    :    // and internal services in this test.
 485  E :    std::wstring external_id = instance_id_ + L"-bar-1";
 486  E :    std::wstring internal_id = instance_id_ + L"-bar-2";
 487    :  
 488    :    // Start an external service with the external instance id.
 489  E :    base::Process process;
 490  E :    ASSERT_NO_FATAL_FAILURE(StartExternalCallTraceService(external_id, &process));
 491  E :    ASSERT_NO_FATAL_FAILURE(CheckIsStillRunning(process.Handle()));
 492    :  
 493    :    // Create a new local service instance and see if it starts. We use a new
 494    :    // instance to pick up the new instance id and to make sure any state in
 495    :    // the static service instance doesn't compromise the test.
 496  E :    Service local_call_trace_service(&session_trace_file_writer_factory_);
 497  E :    local_call_trace_service.set_instance_id(internal_id);
 498  E :    EXPECT_TRUE(local_call_trace_service.Start(true));
 499  E :    EXPECT_TRUE(local_call_trace_service.Stop());
 500    :  
 501    :    // The external instance should still be running.
 502  E :    CheckIsStillRunning(process.Handle());
 503  E :    StopExternalCallTraceService(external_id, &process);
 504  E :  }
 505    :  
 506  E :  TEST_F(CallTraceServiceTest, Connect) {
 507  E :    SessionHandle session_handle = NULL;
 508  E :    TraceFileSegment segment;
 509    :  
 510  E :    ASSERT_TRUE(call_trace_service_.Start(true));
 511  E :    ASSERT_NO_FATAL_FAILURE(CreateSession(&session_handle, &segment));
 512  E :    ASSERT_TRUE(call_trace_service_.Stop());
 513    :  
 514  E :    std::string trace_file_contents;
 515  E :    ReadTraceFile(&trace_file_contents);
 516    :  
 517    :    TraceFileHeader* header =
 518  E :        reinterpret_cast<TraceFileHeader*>(&trace_file_contents[0]);
 519    :  
 520  E :    ASSERT_NO_FATAL_FAILURE(ValidateTraceFileHeader(*header));
 521    :    ASSERT_EQ(trace_file_contents.length(),
 522  E :              RoundedSize(*header) + header->block_size);
 523  E :  }
 524    :  
 525  E :  TEST_F(CallTraceServiceTest, Allocate) {
 526  E :    SessionHandle session_handle = NULL;
 527  E :    TraceFileSegment segment1;
 528  E :    TraceFileSegment segment2;
 529    :  
 530  E :    ASSERT_TRUE(call_trace_service_.Start(true));
 531    :  
 532    :    // Simulate some work on the main thread.
 533  E :    ASSERT_NO_FATAL_FAILURE(CreateSession(&session_handle, &segment1));
 534  E :    segment1.WriteSegmentHeader(session_handle);
 535  E :    MyRecordType* record1 = segment1.AllocateTraceRecord<MyRecordType>();
 536  E :    base::strlcpy(record1->message, "Message 1", arraysize(record1->message));
 537  E :    size_t length1 = segment1.header->segment_length;
 538    :  
 539    :    // Simulate some work on a second thread.
 540  E :    ASSERT_NO_FATAL_FAILURE(AllocateBuffer(session_handle, &segment2));
 541  E :    segment2.WriteSegmentHeader(session_handle);
 542  E :    segment2.header->thread_id += 1;
 543  E :    MyRecordType* record2 = segment2.AllocateTraceRecord<MyRecordType>(256);
 544  E :    base::strlcpy(record2->message, "Message 2", arraysize(record2->message));
 545  E :    size_t length2 = segment2.header->segment_length;
 546    :  
 547    :    // Commit the buffers in the opposite order.
 548  E :    ASSERT_NO_FATAL_FAILURE(ReturnBuffer(session_handle, &segment2));
 549  E :    ASSERT_NO_FATAL_FAILURE(CloseSession(&session_handle));
 550    :  
 551    :    // Make sure everything is flushed.
 552  E :    ASSERT_TRUE(call_trace_service_.Stop());
 553    :  
 554  E :    std::string trace_file_contents;
 555  E :    ASSERT_NO_FATAL_FAILURE(ReadTraceFile(&trace_file_contents));
 556    :  
 557    :    TraceFileHeader* header =
 558  E :        reinterpret_cast<TraceFileHeader*>(&trace_file_contents[0]);
 559    :  
 560  E :    ASSERT_NO_FATAL_FAILURE(ValidateTraceFileHeader(*header));
 561    :    ASSERT_EQ(trace_file_contents.length(),
 562  E :              RoundedSize(*header) + 3 * header->block_size);
 563    :  
 564    :    // Locate and validate the segment header prefix and segment header.
 565    :    // This should be segment 2.
 566  E :    size_t offset = AlignUp(header->header_size, header->block_size);
 567    :    RecordPrefix* prefix =
 568  E :        reinterpret_cast<RecordPrefix*>(&trace_file_contents[0] + offset);
 569  E :    ASSERT_EQ(prefix->type, TraceFileSegmentHeader::kTypeId);
 570  E :    ASSERT_EQ(prefix->size, sizeof(TraceFileSegmentHeader));
 571  E :    ASSERT_EQ(prefix->version.hi, TRACE_VERSION_HI);
 572  E :    ASSERT_EQ(prefix->version.lo, TRACE_VERSION_LO);
 573    :    TraceFileSegmentHeader* segment_header =
 574  E :        reinterpret_cast<TraceFileSegmentHeader*>(prefix + 1);
 575  E :    ASSERT_EQ(segment_header->segment_length, length2);
 576  E :    ASSERT_EQ(segment_header->thread_id, 1 + ::GetCurrentThreadId());
 577    :  
 578    :    // The segment header is followed by the message prefix and record.
 579    :    // This should be message 2.
 580  E :    prefix = reinterpret_cast<RecordPrefix*>(segment_header + 1);
 581  E :    ASSERT_EQ(prefix->type, MyRecordType::kTypeId);
 582  E :    ASSERT_EQ(prefix->size, 256);
 583  E :    ASSERT_EQ(prefix->version.hi, TRACE_VERSION_HI);
 584  E :    ASSERT_EQ(prefix->version.lo, TRACE_VERSION_LO);
 585  E :    MyRecordType* record = reinterpret_cast<MyRecordType*>(prefix + 1);
 586  E :    ASSERT_STREQ(record->message, "Message 2");
 587    :  
 588    :    // Locate and validate the next segment header prefix and segment header.
 589    :    // This should be segment 1.
 590    :  
 591    :    offset = AlignUp(RawPtrDiff(record + 1, &trace_file_contents[0]),
 592  E :                     header->block_size);
 593  E :    prefix = reinterpret_cast<RecordPrefix*>(&trace_file_contents[0] + offset);
 594  E :    ASSERT_EQ(prefix->type, TraceFileSegmentHeader::kTypeId);
 595  E :    ASSERT_EQ(prefix->size, sizeof(TraceFileSegmentHeader));
 596  E :    ASSERT_EQ(prefix->version.hi, TRACE_VERSION_HI);
 597  E :    ASSERT_EQ(prefix->version.lo, TRACE_VERSION_LO);
 598  E :    segment_header = reinterpret_cast<TraceFileSegmentHeader*>(prefix + 1);
 599  E :    ASSERT_EQ(segment_header->segment_length, length1);
 600  E :    ASSERT_EQ(segment_header->thread_id, ::GetCurrentThreadId());
 601    :  
 602    :    // The segment header is followed by the message prefix and record.
 603    :    // This should be message 1.
 604  E :    prefix = reinterpret_cast<RecordPrefix*>(segment_header + 1);
 605  E :    ASSERT_EQ(prefix->type, MyRecordType::kTypeId);
 606  E :    ASSERT_EQ(prefix->size, sizeof(MyRecordType));
 607  E :    ASSERT_EQ(prefix->version.hi, TRACE_VERSION_HI);
 608  E :    ASSERT_EQ(prefix->version.lo, TRACE_VERSION_LO);
 609  E :    record = reinterpret_cast<MyRecordType*>(prefix + 1);
 610  E :    ASSERT_STREQ(record->message, "Message 1");
 611  E :  }
 612    :  
 613  E :  TEST_F(CallTraceServiceTest, AllocateLargeBuffer) {
 614  E :    SessionHandle session_handle = NULL;
 615  E :    TraceFileSegment segment1;
 616  E :    TraceFileSegment segment2;
 617    :  
 618  E :    ASSERT_TRUE(call_trace_service_.Start(true));
 619    :  
 620    :    // Simulate some work on the main thread.
 621  E :    ASSERT_NO_FATAL_FAILURE(CreateSession(&session_handle, &segment1));
 622  E :    segment1.WriteSegmentHeader(session_handle);
 623  E :    MyRecordType* record1 = segment1.AllocateTraceRecord<MyRecordType>();
 624  E :    base::strlcpy(record1->message, "Message 1", arraysize(record1->message));
 625  E :    size_t length1 = segment1.header->segment_length;
 626    :  
 627    :    // Allocate a large buffer.
 628    :    ASSERT_NO_FATAL_FAILURE(AllocateLargeBuffer(
 629    :        session_handle,
 630    :        sizeof(LargeRecordType) + sizeof(RecordPrefix),
 631  E :        &segment2));
 632  E :    segment2.WriteSegmentHeader(session_handle);
 633  E :    segment2.AllocateTraceRecord<LargeRecordType>();
 634  E :    size_t length2 = segment2.header->segment_length;
 635    :  
 636    :    // Commit the buffers and close the session.
 637  E :    ASSERT_NO_FATAL_FAILURE(ReturnBuffer(session_handle, &segment1));
 638  E :    ASSERT_NO_FATAL_FAILURE(ReturnBuffer(session_handle, &segment2));
 639  E :    ASSERT_NO_FATAL_FAILURE(CloseSession(&session_handle));
 640    :  
 641    :    // Make sure everything is flushed.
 642  E :    ASSERT_TRUE(call_trace_service_.Stop());
 643    :  
 644  E :    std::string trace_file_contents;
 645  E :    ASSERT_NO_FATAL_FAILURE(ReadTraceFile(&trace_file_contents));
 646    :  
 647    :    TraceFileHeader* header =
 648  E :        reinterpret_cast<TraceFileHeader*>(&trace_file_contents[0]);
 649    :  
 650  E :    ASSERT_NO_FATAL_FAILURE(ValidateTraceFileHeader(*header));
 651    :    ASSERT_EQ(trace_file_contents.length(),
 652    :              RoundedSize(*header) + 3 * header->block_size +
 653  E :                  sizeof(LargeRecordType));
 654    :  
 655    :    // Locate and validate the segment header prefix and segment header.
 656    :    // This should be segment 1.
 657  E :    size_t offset = AlignUp(header->header_size, header->block_size);
 658    :    RecordPrefix* prefix =
 659  E :        reinterpret_cast<RecordPrefix*>(&trace_file_contents[0] + offset);
 660  E :    ASSERT_EQ(prefix->type, TraceFileSegmentHeader::kTypeId);
 661  E :    ASSERT_EQ(prefix->size, sizeof(TraceFileSegmentHeader));
 662  E :    ASSERT_EQ(prefix->version.hi, TRACE_VERSION_HI);
 663  E :    ASSERT_EQ(prefix->version.lo, TRACE_VERSION_LO);
 664    :    TraceFileSegmentHeader* segment_header =
 665  E :        reinterpret_cast<TraceFileSegmentHeader*>(prefix + 1);
 666  E :    ASSERT_EQ(segment_header->segment_length, length1);
 667  E :    ASSERT_EQ(segment_header->thread_id, ::GetCurrentThreadId());
 668    :  
 669    :    // The segment header is followed by the message prefix and record.
 670    :    // This should be message 1.
 671  E :    prefix = reinterpret_cast<RecordPrefix*>(segment_header + 1);
 672  E :    ASSERT_EQ(prefix->type, MyRecordType::kTypeId);
 673  E :    ASSERT_EQ(prefix->size, sizeof(MyRecordType));
 674  E :    ASSERT_EQ(prefix->version.hi, TRACE_VERSION_HI);
 675  E :    ASSERT_EQ(prefix->version.lo, TRACE_VERSION_LO);
 676  E :    MyRecordType* record = reinterpret_cast<MyRecordType*>(prefix + 1);
 677  E :    ASSERT_STREQ(record->message, "Message 1");
 678    :  
 679    :    // Locate and validate the next segment header prefix and segment header.
 680    :    // This should be segment 2.
 681    :  
 682    :    offset = AlignUp(RawPtrDiff(record + 1, &trace_file_contents[0]),
 683  E :                     header->block_size);
 684  E :    prefix = reinterpret_cast<RecordPrefix*>(&trace_file_contents[0] + offset);
 685  E :    ASSERT_EQ(prefix->type, TraceFileSegmentHeader::kTypeId);
 686  E :    ASSERT_EQ(prefix->size, sizeof(TraceFileSegmentHeader));
 687  E :    ASSERT_EQ(prefix->version.hi, TRACE_VERSION_HI);
 688  E :    ASSERT_EQ(prefix->version.lo, TRACE_VERSION_LO);
 689  E :    segment_header = reinterpret_cast<TraceFileSegmentHeader*>(prefix + 1);
 690  E :    ASSERT_EQ(segment_header->segment_length, length2);
 691  E :    ASSERT_EQ(segment_header->thread_id, ::GetCurrentThreadId());
 692    :  
 693    :    // The segment header is followed by the message prefix and record.
 694    :    // This should be the large buffer contents.
 695  E :    prefix = reinterpret_cast<RecordPrefix*>(segment_header + 1);
 696  E :    ASSERT_EQ(prefix->type, LargeRecordType::kTypeId);
 697  E :    ASSERT_EQ(prefix->size, sizeof(LargeRecordType));
 698  E :    ASSERT_EQ(prefix->version.hi, TRACE_VERSION_HI);
 699  E :    ASSERT_EQ(prefix->version.lo, TRACE_VERSION_LO);
 700  E :  }
 701    :  
 702  E :  TEST_F(CallTraceServiceTest, SendBuffer) {
 703  E :    SessionHandle session_handle = NULL;
 704  E :    TraceFileSegment segment;
 705    :  
 706  E :    const size_t num_blocks = 3;
 707  E :    size_t segment_length[] = {0, 0, 0};
 708    :    const char* messages[] = {
 709    :        "This is message number 1",
 710    :        "The quick brown fox jumped over the lazy dog.",
 711    :        "And now for something completely different ...",
 712  E :    };
 713    :  
 714  E :    ASSERT_EQ(arraysize(segment_length), num_blocks);
 715  E :    ASSERT_EQ(arraysize(messages), num_blocks);
 716    :  
 717    :    // Start up the service and create a session
 718  E :    ASSERT_TRUE(call_trace_service_.Start(true));
 719  E :    ASSERT_NO_FATAL_FAILURE(CreateSession(&session_handle, &segment));
 720    :  
 721    :    // Write the initial block plus num_blocks "message" blocks.  The n-th block
 722    :    // will have n message written to it (i.e., block will have 1 message, the 2nd
 723    :    // two, etc)
 724  E :    for (int block = 0; block < num_blocks; ++block) {
 725  E :      segment.WriteSegmentHeader(session_handle);
 726  E :      for (int i = 0; i <= block; ++i) {
 727  E :        MyRecordType* record = segment.AllocateTraceRecord<MyRecordType>();
 728  E :        base::strlcpy(record->message, messages[i], arraysize(record->message));
 729  E :      }
 730  E :      segment_length[block] = segment.header->segment_length;
 731  E :      ASSERT_NO_FATAL_FAILURE(ExchangeBuffer(session_handle, &segment));
 732  E :    }
 733  E :    ASSERT_NO_FATAL_FAILURE(ReturnBuffer(session_handle, &segment));
 734  E :    ASSERT_NO_FATAL_FAILURE(CloseSession(&session_handle));
 735  E :    ASSERT_TRUE(call_trace_service_.Stop());
 736  E :    ASSERT_FALSE(call_trace_service_.is_running());
 737    :  
 738    :    // Load the trace file contents into memory.
 739  E :    std::string trace_file_contents;
 740  E :    ASSERT_NO_FATAL_FAILURE(ReadTraceFile(&trace_file_contents));
 741    :  
 742    :    // Read and validate the trace file header. We expect to have written
 743    :    // the header (rounded up to a block) plus num_blocks of data,
 744    :    // plus 1 block containing the process ended event.
 745    :    TraceFileHeader* header =
 746  E :        reinterpret_cast<TraceFileHeader*>(&trace_file_contents[0]);
 747  E :    ASSERT_NO_FATAL_FAILURE(ValidateTraceFileHeader(*header));
 748  E :    size_t total_blocks = 1 + num_blocks;
 749    :    EXPECT_EQ(trace_file_contents.length(),
 750  E :              RoundedSize(*header) + total_blocks * header->block_size);
 751    :  
 752    :    // Read each data block and validate its contents.
 753  E :    size_t segment_offset = AlignUp(header->header_size, header->block_size);
 754  E :    for (int block = 0; block < num_blocks; ++block) {
 755    :      // Locate and validate the segment header prefix.
 756    :      RecordPrefix* prefix = reinterpret_cast<RecordPrefix*>(
 757  E :          &trace_file_contents[0] + segment_offset);
 758  E :      ASSERT_EQ(prefix->type, TraceFileSegmentHeader::kTypeId);
 759  E :      ASSERT_EQ(prefix->size, sizeof(TraceFileSegmentHeader));
 760  E :      ASSERT_EQ(prefix->version.hi, TRACE_VERSION_HI);
 761  E :      ASSERT_EQ(prefix->version.lo, TRACE_VERSION_LO);
 762    :  
 763    :      // The segment header prefix is followed by the actual segment header.
 764    :      TraceFileSegmentHeader* segment_header =
 765  E :          reinterpret_cast<TraceFileSegmentHeader*>(prefix + 1);
 766  E :      ASSERT_EQ(segment_header->segment_length, segment_length[block]);
 767  E :      ASSERT_EQ(segment_header->thread_id, ::GetCurrentThreadId());
 768    :  
 769    :      // The segment header is followed by the n message records, where N
 770    :      // is the same as the block number we're currently on (1 based).
 771  E :      prefix = reinterpret_cast<RecordPrefix*>(segment_header + 1);
 772  E :      for (int j = 0; j <= block; ++j) {
 773  E :        ASSERT_EQ(prefix->type, MyRecordType::kTypeId);
 774  E :        ASSERT_EQ(prefix->size, sizeof(MyRecordType));
 775  E :        ASSERT_EQ(prefix->version.hi, TRACE_VERSION_HI);
 776  E :        ASSERT_EQ(prefix->version.lo, TRACE_VERSION_LO);
 777  E :        MyRecordType* record = reinterpret_cast<MyRecordType*>(prefix + 1);
 778  E :        ASSERT_STREQ(record->message, messages[j]);
 779  E :        prefix = reinterpret_cast<RecordPrefix*>(record + 1);
 780  E :      }
 781    :  
 782    :      EXPECT_EQ(segment_header->segment_length,
 783  E :                RawPtrDiff(prefix, segment_header + 1));
 784    :  
 785    :      segment_offset = AlignUp(
 786    :          RawPtrDiff(prefix, &trace_file_contents[0]),
 787  E :          header->block_size);
 788  E :    }
 789    :  
 790    :    // Locate and validate the segment header prefix for the process ended
 791    :    // event block.
 792    :    RecordPrefix* prefix = reinterpret_cast<RecordPrefix*>(
 793  E :        &trace_file_contents[0] + segment_offset);
 794  E :    ASSERT_EQ(prefix->type, TraceFileSegmentHeader::kTypeId);
 795  E :    ASSERT_EQ(prefix->size, sizeof(TraceFileSegmentHeader));
 796  E :    ASSERT_EQ(prefix->version.hi, TRACE_VERSION_HI);
 797  E :    ASSERT_EQ(prefix->version.lo, TRACE_VERSION_LO);
 798    :  
 799    :    // The segment header prefix is followed by the actual segment header.
 800    :    TraceFileSegmentHeader* segment_header =
 801  E :        reinterpret_cast<TraceFileSegmentHeader*>(prefix + 1);
 802  E :    ASSERT_EQ(sizeof(RecordPrefix), segment_header->segment_length);
 803  E :    ASSERT_EQ(0, segment_header->thread_id);
 804    :  
 805    :    // Validate the process ended event.
 806  E :    prefix = reinterpret_cast<RecordPrefix*>(segment_header + 1);
 807  E :    ASSERT_EQ(TRACE_PROCESS_ENDED, prefix->type);
 808  E :    ASSERT_EQ(0, prefix->size);
 809  E :    ASSERT_EQ(TRACE_VERSION_HI, prefix->version.hi);
 810  E :    ASSERT_EQ(TRACE_VERSION_LO, prefix->version.lo);
 811    :    EXPECT_EQ(segment_header->segment_length,
 812  E :              RawPtrDiff(prefix + 1, segment_header + 1));
 813  E :  }
 814    :  
 815    :  }  // namespace service
 816    :  }  // namespace trace

Coverage information generated Thu Jan 14 17:40:38 2016.