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11589d9b32
Switches from test::Multiprocess to test::MultiprocessExec for ElfImageReader.MainExecutableChild. Uses the new child process launching, and passes the expected symbol address from the child to the parent, rather than assuming the value will be the same in both processes. And, enables the test on Fuchsia since it now works. Bug: crashpad:196, crashpad:215 Change-Id: I3b43407b6584275d61bedc9c13d1625b950fc23b Reviewed-on: https://chromium-review.googlesource.com/884993 Commit-Queue: Scott Graham <scottmg@chromium.org> Reviewed-by: Mark Mentovai <mark@chromium.org>
186 lines
5.0 KiB
C++
186 lines
5.0 KiB
C++
// Copyright 2018 The Crashpad Authors. All rights reserved.
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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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#include "test/multiprocess_exec.h"
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#include <launchpad/launchpad.h>
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#include <zircon/process.h>
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#include <zircon/syscalls.h>
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#include "base/files/scoped_file.h"
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#include "base/fuchsia/fuchsia_logging.h"
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#include "base/fuchsia/scoped_zx_handle.h"
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#include "gtest/gtest.h"
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namespace crashpad {
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namespace test {
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namespace internal {
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struct MultiprocessInfo {
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MultiprocessInfo() {}
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base::ScopedFD stdin_write;
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base::ScopedFD stdout_read;
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base::ScopedZxHandle child;
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};
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} // namespace internal
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Multiprocess::Multiprocess()
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: info_(nullptr),
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code_(EXIT_SUCCESS),
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reason_(kTerminationNormal) {
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}
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void Multiprocess::Run() {
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// Set up and spawn the child process.
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ASSERT_NO_FATAL_FAILURE(PreFork());
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RunChild();
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// And then run the parent actions in this process.
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RunParent();
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// Wait until the child exits.
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zx_signals_t signals;
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ASSERT_EQ(
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zx_object_wait_one(
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info_->child.get(), ZX_TASK_TERMINATED, ZX_TIME_INFINITE, &signals),
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ZX_OK);
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ASSERT_EQ(signals, ZX_TASK_TERMINATED);
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// Get the child's exit code.
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zx_info_process_t proc_info;
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zx_status_t status = zx_object_get_info(info_->child.get(),
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ZX_INFO_PROCESS,
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&proc_info,
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sizeof(proc_info),
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nullptr,
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nullptr);
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if (status != ZX_OK) {
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ZX_LOG(ERROR, status) << "zx_object_get_info";
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ADD_FAILURE() << "Unable to get exit code of child";
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} else {
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if (code_ != proc_info.return_code) {
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ADD_FAILURE() << "Child exited with code " << proc_info.return_code
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<< ", expected exit with code " << code_;
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}
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}
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}
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void Multiprocess::SetExpectedChildTermination(TerminationReason reason,
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int code) {
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EXPECT_EQ(info_, nullptr)
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<< "SetExpectedChildTermination() must be called before Run()";
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reason_ = reason;
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code_ = code;
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}
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Multiprocess::~Multiprocess() {
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delete info_;
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}
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FileHandle Multiprocess::ReadPipeHandle() const {
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return info_->stdout_read.get();
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}
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FileHandle Multiprocess::WritePipeHandle() const {
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return info_->stdin_write.get();
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}
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void Multiprocess::CloseReadPipe() {
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info_->stdout_read.reset();
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}
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void Multiprocess::CloseWritePipe() {
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info_->stdin_write.reset();
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}
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void Multiprocess::RunParent() {
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MultiprocessParent();
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info_->stdout_read.reset();
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info_->stdin_write.reset();
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}
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void Multiprocess::RunChild() {
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MultiprocessChild();
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}
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MultiprocessExec::MultiprocessExec()
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: Multiprocess(), command_(), arguments_(), argv_() {
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}
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void MultiprocessExec::SetChildCommand(
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const base::FilePath& command,
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const std::vector<std::string>* arguments) {
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command_ = command;
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if (arguments) {
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arguments_ = *arguments;
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} else {
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arguments_.clear();
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}
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}
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MultiprocessExec::~MultiprocessExec() {}
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void MultiprocessExec::PreFork() {
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ASSERT_FALSE(command_.empty());
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ASSERT_TRUE(argv_.empty());
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argv_.push_back(command_.value().c_str());
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for (const std::string& argument : arguments_) {
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argv_.push_back(argument.c_str());
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}
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ASSERT_EQ(info(), nullptr);
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set_info(new internal::MultiprocessInfo());
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}
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void MultiprocessExec::MultiprocessChild() {
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launchpad_t* lp;
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launchpad_create(zx_job_default(), command_.value().c_str(), &lp);
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launchpad_load_from_file(lp, command_.value().c_str());
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launchpad_set_args(lp, argv_.size(), &argv_[0]);
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// Pass the filesystem namespace, parent environment, and default job to the
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// child, but don't include any other file handles, preferring to set them
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// up explicitly below.
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launchpad_clone(
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lp, LP_CLONE_FDIO_NAMESPACE | LP_CLONE_ENVIRON | LP_CLONE_DEFAULT_JOB);
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int stdin_parent_side;
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launchpad_add_pipe(lp, &stdin_parent_side, STDIN_FILENO);
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info()->stdin_write.reset(stdin_parent_side);
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int stdout_parent_side;
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launchpad_add_pipe(lp, &stdout_parent_side, STDOUT_FILENO);
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info()->stdout_read.reset(stdout_parent_side);
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launchpad_clone_fd(lp, STDERR_FILENO, STDERR_FILENO);
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const char* error_message;
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zx_handle_t child;
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zx_status_t status = launchpad_go(lp, &child, &error_message);
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ZX_CHECK(status == ZX_OK, status) << "launchpad_go: " << error_message;
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info()->child.reset(child);
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}
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ProcessType MultiprocessExec::ChildProcess() {
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return info()->child.get();
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}
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} // namespace test
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} // namespace crashpad
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