| Index: sandbox/src/target_services.cc
|
| diff --git a/sandbox/src/target_services.cc b/sandbox/src/target_services.cc
|
| deleted file mode 100644
|
| index e13a3d69c9cd5f9f87b24a5132d470bc2145e98c..0000000000000000000000000000000000000000
|
| --- a/sandbox/src/target_services.cc
|
| +++ /dev/null
|
| @@ -1,188 +0,0 @@
|
| -// Copyright (c) 2012 The Chromium Authors. All rights reserved.
|
| -// Use of this source code is governed by a BSD-style license that can be
|
| -// found in the LICENSE file.
|
| -
|
| -#include "sandbox/src/target_services.h"
|
| -
|
| -#include <process.h>
|
| -
|
| -#include "base/basictypes.h"
|
| -#include "sandbox/src/crosscall_client.h"
|
| -#include "sandbox/src/handle_closer_agent.h"
|
| -#include "sandbox/src/handle_interception.h"
|
| -#include "sandbox/src/ipc_tags.h"
|
| -#include "sandbox/src/restricted_token_utils.h"
|
| -#include "sandbox/src/sandbox.h"
|
| -#include "sandbox/src/sandbox_types.h"
|
| -#include "sandbox/src/sharedmem_ipc_client.h"
|
| -#include "sandbox/src/sandbox_nt_util.h"
|
| -
|
| -namespace {
|
| -
|
| -// Flushing a cached key is triggered by just opening the key and closing the
|
| -// resulting handle. RegDisablePredefinedCache() is the documented way to flush
|
| -// HKCU so do not use it with this function.
|
| -bool FlushRegKey(HKEY root) {
|
| - HKEY key;
|
| - if (ERROR_SUCCESS == ::RegOpenKeyExW(root, NULL, 0, MAXIMUM_ALLOWED, &key)) {
|
| - if (ERROR_SUCCESS != ::RegCloseKey(key))
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| - return false;
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| - }
|
| - return true;
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| -}
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| -
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| -// This function forces advapi32.dll to release some internally cached handles
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| -// that were made during calls to RegOpenkey and RegOpenKeyEx if it is called
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| -// with a more restrictive token. Returns true if the flushing is succesful
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| -// although this behavior is undocumented and there is no guarantee that in
|
| -// fact this will happen in future versions of windows.
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| -bool FlushCachedRegHandles() {
|
| - return (FlushRegKey(HKEY_LOCAL_MACHINE) &&
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| - FlushRegKey(HKEY_CLASSES_ROOT) &&
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| - FlushRegKey(HKEY_USERS));
|
| -}
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| -
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| -// Checks if we have handle entries pending and runs the closer.
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| -bool CloseOpenHandles() {
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| - if (sandbox::HandleCloserAgent::NeedsHandlesClosed()) {
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| - sandbox::HandleCloserAgent handle_closer;
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| -
|
| - handle_closer.InitializeHandlesToClose();
|
| - if (!handle_closer.CloseHandles())
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| - return false;
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| - }
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| -
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| - return true;
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| -}
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| -
|
| -} // namespace
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| -
|
| -namespace sandbox {
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| -
|
| -SANDBOX_INTERCEPT IntegrityLevel g_shared_delayed_integrity_level =
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| - INTEGRITY_LEVEL_LAST;
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| -
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| -TargetServicesBase::TargetServicesBase() {
|
| -}
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| -
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| -ResultCode TargetServicesBase::Init() {
|
| - process_state_.SetInitCalled();
|
| - return SBOX_ALL_OK;
|
| -}
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| -
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| -// Failure here is a breach of security so the process is terminated.
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| -void TargetServicesBase::LowerToken() {
|
| - if (ERROR_SUCCESS !=
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| - SetProcessIntegrityLevel(g_shared_delayed_integrity_level))
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| - ::TerminateProcess(::GetCurrentProcess(), SBOX_FATAL_INTEGRITY);
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| - process_state_.SetRevertedToSelf();
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| - // If the client code as called RegOpenKey, advapi32.dll has cached some
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| - // handles. The following code gets rid of them.
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| - if (!::RevertToSelf())
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| - ::TerminateProcess(::GetCurrentProcess(), SBOX_FATAL_DROPTOKEN);
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| - if (!FlushCachedRegHandles())
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| - ::TerminateProcess(::GetCurrentProcess(), SBOX_FATAL_FLUSHANDLES);
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| - if (ERROR_SUCCESS != ::RegDisablePredefinedCache())
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| - ::TerminateProcess(::GetCurrentProcess(), SBOX_FATAL_CACHEDISABLE);
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| - if (!CloseOpenHandles())
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| - ::TerminateProcess(::GetCurrentProcess(), SBOX_FATAL_CLOSEHANDLES);
|
| -}
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| -
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| -ProcessState* TargetServicesBase::GetState() {
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| - return &process_state_;
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| -}
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| -
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| -TargetServicesBase* TargetServicesBase::GetInstance() {
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| - static TargetServicesBase instance;
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| - return &instance;
|
| -}
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| -
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| -// The broker services a 'test' IPC service with the IPC_PING_TAG tag.
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| -bool TargetServicesBase::TestIPCPing(int version) {
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| - void* memory = GetGlobalIPCMemory();
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| - if (NULL == memory) {
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| - return false;
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| - }
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| - SharedMemIPCClient ipc(memory);
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| - CrossCallReturn answer = {0};
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| -
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| - if (1 == version) {
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| - uint32 tick1 = ::GetTickCount();
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| - uint32 cookie = 717115;
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| - ResultCode code = CrossCall(ipc, IPC_PING1_TAG, cookie, &answer);
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| -
|
| - if (SBOX_ALL_OK != code) {
|
| - return false;
|
| - }
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| - // We should get two extended returns values from the IPC, one is the
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| - // tick count on the broker and the other is the cookie times two.
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| - if ((answer.extended_count != 2)) {
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| - return false;
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| - }
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| - // We test the first extended answer to be within the bounds of the tick
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| - // count only if there was no tick count wraparound.
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| - uint32 tick2 = ::GetTickCount();
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| - if (tick2 >= tick1) {
|
| - if ((answer.extended[0].unsigned_int < tick1) ||
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| - (answer.extended[0].unsigned_int > tick2)) {
|
| - return false;
|
| - }
|
| - }
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| -
|
| - if (answer.extended[1].unsigned_int != cookie * 2) {
|
| - return false;
|
| - }
|
| - } else if (2 == version) {
|
| - uint32 cookie = 717111;
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| - InOutCountedBuffer counted_buffer(&cookie, sizeof(cookie));
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| - ResultCode code = CrossCall(ipc, IPC_PING2_TAG, counted_buffer, &answer);
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| -
|
| - if (SBOX_ALL_OK != code) {
|
| - return false;
|
| - }
|
| - if (cookie != 717111 * 3) {
|
| - return false;
|
| - }
|
| - } else {
|
| - return false;
|
| - }
|
| - return true;
|
| -}
|
| -
|
| -bool ProcessState::IsKernel32Loaded() {
|
| - return process_state_ != 0;
|
| -}
|
| -
|
| -bool ProcessState::InitCalled() {
|
| - return process_state_ > 1;
|
| -}
|
| -
|
| -bool ProcessState::RevertedToSelf() {
|
| - return process_state_ > 2;
|
| -}
|
| -
|
| -void ProcessState::SetKernel32Loaded() {
|
| - if (!process_state_)
|
| - process_state_ = 1;
|
| -}
|
| -
|
| -void ProcessState::SetInitCalled() {
|
| - if (process_state_ < 2)
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| - process_state_ = 2;
|
| -}
|
| -
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| -void ProcessState::SetRevertedToSelf() {
|
| - if (process_state_ < 3)
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| - process_state_ = 3;
|
| -}
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| -
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| -ResultCode TargetServicesBase::DuplicateHandle(HANDLE source_handle,
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| - DWORD target_process_id,
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| - HANDLE* target_handle,
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| - DWORD desired_access,
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| - DWORD options) {
|
| - return sandbox::DuplicateHandleProxy(source_handle, target_process_id,
|
| - target_handle, desired_access, options);
|
| -}
|
| -
|
| -} // namespace sandbox
|
|
|