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185 lines
5.8 KiB
Plaintext
185 lines
5.8 KiB
Plaintext
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// Copyright 2016 The Chromium Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#include "base/mac/mach_port_broker.h"
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#include <bsm/libbsm.h>
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#include <servers/bootstrap.h>
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#include "base/logging.h"
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#include "base/mac/foundation_util.h"
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#include "base/mac/mach_logging.h"
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#include "base/strings/string_util.h"
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#include "base/strings/stringprintf.h"
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namespace base {
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namespace {
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// Mach message structure used in the child as a sending message.
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struct MachPortBroker_ChildSendMsg {
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mach_msg_header_t header;
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mach_msg_body_t body;
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mach_msg_port_descriptor_t child_task_port;
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};
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// Complement to the ChildSendMsg, this is used in the parent for receiving
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// a message. Contains a message trailer with audit information.
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struct MachPortBroker_ParentRecvMsg : public MachPortBroker_ChildSendMsg {
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mach_msg_audit_trailer_t trailer;
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};
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} // namespace
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// static
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bool MachPortBroker::ChildSendTaskPortToParent(const std::string& name) {
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// Look up the named MachPortBroker port that's been registered with the
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// bootstrap server.
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mach_port_t parent_port;
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kern_return_t kr = bootstrap_look_up(bootstrap_port,
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const_cast<char*>(GetMachPortName(name, true).c_str()), &parent_port);
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if (kr != KERN_SUCCESS) {
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BOOTSTRAP_LOG(ERROR, kr) << "bootstrap_look_up";
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return false;
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}
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base::mac::ScopedMachSendRight scoped_right(parent_port);
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// Create the check in message. This will copy a send right on this process'
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// (the child's) task port and send it to the parent.
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MachPortBroker_ChildSendMsg msg;
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bzero(&msg, sizeof(msg));
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msg.header.msgh_bits = MACH_MSGH_BITS_REMOTE(MACH_MSG_TYPE_COPY_SEND) |
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MACH_MSGH_BITS_COMPLEX;
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msg.header.msgh_remote_port = parent_port;
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msg.header.msgh_size = sizeof(msg);
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msg.body.msgh_descriptor_count = 1;
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msg.child_task_port.name = mach_task_self();
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msg.child_task_port.disposition = MACH_MSG_TYPE_PORT_SEND;
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msg.child_task_port.type = MACH_MSG_PORT_DESCRIPTOR;
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kr = mach_msg(&msg.header, MACH_SEND_MSG | MACH_SEND_TIMEOUT, sizeof(msg),
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0, MACH_PORT_NULL, 100 /*milliseconds*/, MACH_PORT_NULL);
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if (kr != KERN_SUCCESS) {
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MACH_LOG(ERROR, kr) << "mach_msg";
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return false;
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}
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return true;
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}
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// static
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std::string MachPortBroker::GetMachPortName(const std::string& name,
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bool is_child) {
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// In child processes, use the parent's pid.
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const pid_t pid = is_child ? getppid() : getpid();
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return base::StringPrintf(
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"%s.%s.%d", base::mac::BaseBundleID(), name.c_str(), pid);
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}
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mach_port_t MachPortBroker::TaskForPid(base::ProcessHandle pid) const {
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base::AutoLock lock(lock_);
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MachPortBroker::MachMap::const_iterator it = mach_map_.find(pid);
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if (it == mach_map_.end())
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return MACH_PORT_NULL;
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return it->second;
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}
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MachPortBroker::MachPortBroker(const std::string& name) : name_(name) {}
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MachPortBroker::~MachPortBroker() {}
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bool MachPortBroker::Init() {
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DCHECK(server_port_.get() == MACH_PORT_NULL);
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// Check in with launchd and publish the service name.
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mach_port_t port;
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kern_return_t kr = bootstrap_check_in(
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bootstrap_port, GetMachPortName(name_, false).c_str(), &port);
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if (kr != KERN_SUCCESS) {
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BOOTSTRAP_LOG(ERROR, kr) << "bootstrap_check_in";
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return false;
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}
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server_port_.reset(port);
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// Start the dispatch source.
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std::string queue_name =
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base::StringPrintf("%s.MachPortBroker", base::mac::BaseBundleID());
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dispatch_source_.reset(new base::DispatchSourceMach(
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queue_name.c_str(), server_port_.get(), ^{ HandleRequest(); }));
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dispatch_source_->Resume();
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return true;
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}
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void MachPortBroker::AddPlaceholderForPid(base::ProcessHandle pid) {
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lock_.AssertAcquired();
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DCHECK_EQ(0u, mach_map_.count(pid));
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mach_map_[pid] = MACH_PORT_NULL;
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}
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void MachPortBroker::InvalidatePid(base::ProcessHandle pid) {
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lock_.AssertAcquired();
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MachMap::iterator mach_it = mach_map_.find(pid);
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if (mach_it != mach_map_.end()) {
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kern_return_t kr = mach_port_deallocate(mach_task_self(), mach_it->second);
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MACH_LOG_IF(WARNING, kr != KERN_SUCCESS, kr) << "mach_port_deallocate";
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mach_map_.erase(mach_it);
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}
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}
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void MachPortBroker::HandleRequest() {
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MachPortBroker_ParentRecvMsg msg;
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bzero(&msg, sizeof(msg));
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msg.header.msgh_size = sizeof(msg);
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msg.header.msgh_local_port = server_port_.get();
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const mach_msg_option_t options = MACH_RCV_MSG |
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MACH_RCV_TRAILER_TYPE(MACH_RCV_TRAILER_AUDIT) |
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MACH_RCV_TRAILER_ELEMENTS(MACH_RCV_TRAILER_AUDIT);
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kern_return_t kr = mach_msg(&msg.header,
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options,
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0,
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sizeof(msg),
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server_port_.get(),
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MACH_MSG_TIMEOUT_NONE,
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MACH_PORT_NULL);
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if (kr != KERN_SUCCESS) {
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MACH_LOG(ERROR, kr) << "mach_msg";
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return;
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}
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// Use the kernel audit information to make sure this message is from
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// a task that this process spawned. The kernel audit token contains the
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// unspoofable pid of the task that sent the message.
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pid_t child_pid = audit_token_to_pid(msg.trailer.msgh_audit);
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mach_port_t child_task_port = msg.child_task_port.name;
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// Take the lock and update the broker information.
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{
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base::AutoLock lock(lock_);
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FinalizePid(child_pid, child_task_port);
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}
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NotifyObservers(child_pid);
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}
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void MachPortBroker::FinalizePid(base::ProcessHandle pid,
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mach_port_t task_port) {
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lock_.AssertAcquired();
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MachMap::iterator it = mach_map_.find(pid);
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if (it == mach_map_.end()) {
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// Do nothing for unknown pids.
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LOG(ERROR) << "Unknown process " << pid << " is sending Mach IPC messages!";
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return;
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}
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DCHECK(it->second == MACH_PORT_NULL);
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if (it->second == MACH_PORT_NULL)
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it->second = task_port;
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}
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} // namespace base
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