2020-01-17 21:05:03 +08:00
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// Copyright 2019 Google LLC
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2019-03-19 00:21:48 +08:00
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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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#ifndef SANDBOXED_API_SANDBOX_H_
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#define SANDBOXED_API_SANDBOX_H_
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#include <memory>
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#include <string>
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#include <vector>
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#include "sandboxed_api/file_toc.h"
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#include "absl/base/macros.h"
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#include "absl/status/statusor.h"
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#include "sandboxed_api/rpcchannel.h"
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#include "sandboxed_api/sandbox2/client.h"
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#include "sandboxed_api/sandbox2/comms.h"
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#include "sandboxed_api/sandbox2/policy.h"
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#include "sandboxed_api/sandbox2/policybuilder.h"
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#include "sandboxed_api/sandbox2/sandbox2.h"
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#include "sandboxed_api/vars.h"
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namespace sapi {
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// The Sandbox class represents the sandboxed library. It provides users with
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// means to communicate with it (make function calls, transfer memory).
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class Sandbox {
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public:
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explicit Sandbox(const FileToc* embed_lib_toc)
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: embed_lib_toc_(embed_lib_toc) {}
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Sandbox(const Sandbox&) = delete;
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Sandbox& operator=(const Sandbox&) = delete;
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virtual ~Sandbox();
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// Initializes a new sandboxing session.
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absl::Status Init();
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// Returns whether the current sandboxing session is active.
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bool is_active() const;
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// Terminates the current sandboxing session (if it exists).
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void Terminate(bool attempt_graceful_exit = true);
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// Restarts the sandbox.
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absl::Status Restart(bool attempt_graceful_exit) {
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Terminate(attempt_graceful_exit);
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return Init();
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}
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sandbox2::Comms* comms() const { return comms_; }
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RPCChannel* rpc_channel() const { return rpc_channel_.get(); }
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int pid() const { return pid_; }
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// Synchronizes the underlying memory for the pointer before the call.
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absl::Status SynchronizePtrBefore(v::Callable* ptr);
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// Synchronizes the underlying memory for pointer after the call.
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absl::Status SynchronizePtrAfter(v::Callable* ptr) const;
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// Makes a call to the sandboxee.
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template <typename... Args>
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absl::Status Call(const std::string& func, v::Callable* ret, Args&&... args) {
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static_assert(sizeof...(Args) <= FuncCall::kArgsMax,
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"Too many arguments to sapi::Sandbox::Call()");
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return Call(func, ret, {std::forward<Args>(args)...});
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}
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absl::Status Call(const std::string& func, v::Callable* ret,
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std::initializer_list<v::Callable*> args);
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// Allocates memory in the sandboxee, automatic_free indicates whether the
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// memory should be freed on the remote side when the 'var' goes out of scope.
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absl::Status Allocate(v::Var* var, bool automatic_free = false);
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// Frees memory in the sandboxee.
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absl::Status Free(v::Var* var);
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// Finds the address of a symbol in the sandboxee.
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absl::Status Symbol(const char* symname, void** addr);
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// Transfers memory (both directions). Status is returned (memory transfer
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// succeeded/failed).
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absl::Status TransferToSandboxee(v::Var* var);
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absl::Status TransferFromSandboxee(v::Var* var);
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2020-09-02 23:46:48 +08:00
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absl::StatusOr<std::string> GetCString(const v::RemotePtr& str,
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size_t max_length = 10ULL
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<< 20 /* 10 MiB*/
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);
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// Waits until the sandbox terminated and returns the result.
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const sandbox2::Result& AwaitResult();
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const sandbox2::Result& result() const { return result_; }
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absl::Status SetWallTimeLimit(absl::Duration limit) const;
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ABSL_DEPRECATED(
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"Use sapi::Sandbox::SetWallTimeLimit(absl::Duration) overload instead")
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absl::Status SetWallTimeLimit(time_t limit) const {
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return this->SetWallTimeLimit(absl::Seconds(limit));
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}
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protected:
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// Gets the arguments passed to the sandboxee.
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virtual void GetArgs(std::vector<std::string>* args) const {
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args->push_back("--logtostderr=true");
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}
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private:
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// Returns the sandbox policy. Subclasses can modify the default policy
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// builder, or return a completely new policy.
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virtual std::unique_ptr<sandbox2::Policy> ModifyPolicy(
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sandbox2::PolicyBuilder* builder);
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// Path of the sandboxee:
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// - relative to runfiles directory: ::sapi::GetDataDependencyFilePath()
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// will be applied to it,
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// - absolute: will be used as is.
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virtual std::string GetLibPath() const { return ""; }
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2021-10-11 16:21:26 +08:00
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// Gets the environment variables passed to the sandboxee.
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virtual void GetEnvs(std::vector<std::string>* envs) const {}
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// Modifies the Executor object if needed.
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virtual void ModifyExecutor(sandbox2::Executor* executor) {}
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// Provides a custom notifier for sandboxee events. May return nullptr.
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virtual std::unique_ptr<sandbox2::Notify> CreateNotifier() { return nullptr; }
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// Exits the sandboxee.
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void Exit() const;
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// The client to the library forkserver.
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std::unique_ptr<sandbox2::ForkClient> fork_client_;
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std::unique_ptr<sandbox2::Executor> forkserver_executor_;
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// The main sandbox2::Sandbox2 object.
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std::unique_ptr<sandbox2::Sandbox2> s2_;
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// Result of the most recent sandbox execution
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sandbox2::Result result_;
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// Comms with the sandboxee.
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sandbox2::Comms* comms_ = nullptr;
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// RPCChannel object.
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std::unique_ptr<RPCChannel> rpc_channel_;
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// The main pid of the sandboxee.
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pid_t pid_ = 0;
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// FileTOC with the embedded library, takes precedence over GetLibPath if
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// present (not nullptr).
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const FileToc* embed_lib_toc_;
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};
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} // namespace sapi
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#endif // SANDBOXED_API_SANDBOX_H_
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