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486 lines
16 KiB
Swift
486 lines
16 KiB
Swift
//===----------------------------------------------------------------------===//
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// Copyright © 2025-2026 Apple Inc. and the Containerization project authors.
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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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// https://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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//===----------------------------------------------------------------------===//
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import ContainerizationError
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import ContainerizationExtras
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import ContainerizationOCI
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import ContainerizationOS
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import Foundation
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import Logging
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import Synchronization
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/// `LinuxProcess` represents a Linux process and is used to
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/// setup and control the full lifecycle for the process.
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public final class LinuxProcess: Sendable {
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/// The ID of the process. This is purely metadata for the caller.
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public let id: String
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/// What container owns this process (if any).
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public let owningContainer: String?
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package struct StdioSetup: Sendable {
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let port: UInt32
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let writer: Writer
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}
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package struct StdioReaderSetup {
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let port: UInt32
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let reader: ReaderStream
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}
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package struct Stdio: Sendable {
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let stdin: StdioReaderSetup?
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let stdout: StdioSetup?
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let stderr: StdioSetup?
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}
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private struct StdioHandles: Sendable {
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var stdin: FileHandle?
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var stdout: FileHandle?
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var stderr: FileHandle?
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mutating func close() throws {
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if let stdin {
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try stdin.close()
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stdin.readabilityHandler = nil
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self.stdin = nil
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}
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if let stdout {
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try stdout.close()
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stdout.readabilityHandler = nil
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self.stdout = nil
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}
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if let stderr {
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try stderr.close()
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stderr.readabilityHandler = nil
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self.stderr = nil
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}
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}
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}
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private struct State {
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var spec: ContainerizationOCI.Spec
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var pid: Int32
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var stdio: StdioHandles
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var stdinRelay: Task<(), Never>?
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var ioTracker: IoTracker?
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var deletionTask: Task<Void, Error>?
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struct IoTracker {
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let stream: AsyncStream<Void>
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let cont: AsyncStream<Void>.Continuation
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let configuredStreams: Int
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}
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}
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/// The process ID for the container process. This will be -1
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/// if the process has not been started.
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public var pid: Int32 {
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state.withLock { $0.pid }
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}
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private let state: Mutex<State>
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private let ioSetup: Stdio
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private let agent: any VirtualMachineAgent
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private let vm: any VirtualMachineInstance
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private let ociRuntimePath: String?
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private let logger: Logger?
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private let onDelete: (@Sendable () async -> Void)?
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init(
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_ id: String,
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containerID: String? = nil,
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spec: Spec,
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io: Stdio,
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ociRuntimePath: String?,
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agent: any VirtualMachineAgent,
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vm: any VirtualMachineInstance,
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logger: Logger?,
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onDelete: (@Sendable () async -> Void)? = nil
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) {
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self.id = id
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self.owningContainer = containerID
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self.state = Mutex<State>(.init(spec: spec, pid: -1, stdio: StdioHandles()))
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self.ioSetup = io
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self.agent = agent
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self.ociRuntimePath = ociRuntimePath
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self.vm = vm
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self.logger = logger
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self.onDelete = onDelete
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}
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}
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extension LinuxProcess {
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func setupIO(listeners: [VsockListener?]) async throws -> [FileHandle?] {
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// Nested virtualization (x86_64 CI) is dramatically slower to bring the
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// guest vsock listeners up than native arm64 virt, so allow a longer
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// window there while keeping the arm64 path tight.
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#if arch(x86_64)
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let ioTimeout: UInt32 = 30
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#else
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let ioTimeout: UInt32 = 3
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#endif
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let handles = try await Timeout.run(seconds: ioTimeout) {
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try await withThrowingTaskGroup(of: (Int, FileHandle?).self) { group in
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var results = [FileHandle?](repeating: nil, count: 3)
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for (index, listener) in listeners.enumerated() {
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guard let listener else { continue }
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group.addTask {
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let first = await listener.first(where: { _ in true })
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try listener.finish()
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return (index, first)
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}
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}
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for try await (index, fileHandle) in group {
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results[index] = fileHandle
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}
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return results
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}
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}
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// Note: stdin relay is started separately via startStdinRelay() after
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// the process has started, to avoid a deadlock where closeStdin is
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// called before the process is consuming from the pipe.
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var configuredStreams = 0
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let (stream, cc) = AsyncStream<Void>.makeStream()
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if let stdout = self.ioSetup.stdout {
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configuredStreams += 1
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handles[1]?.readabilityHandler = { handle in
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do {
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let data = handle.availableData
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if data.isEmpty {
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// This block is called when the producer (the guest) closes
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// the fd it is writing into.
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handles[1]?.readabilityHandler = nil
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cc.yield()
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return
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}
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try stdout.writer.write(data)
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} catch {
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self.logger?.error("failed to write to stdout: \(error)")
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}
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}
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}
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if let stderr = self.ioSetup.stderr {
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configuredStreams += 1
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handles[2]?.readabilityHandler = { handle in
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do {
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let data = handle.availableData
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if data.isEmpty {
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handles[2]?.readabilityHandler = nil
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cc.yield()
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return
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}
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try stderr.writer.write(data)
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} catch {
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self.logger?.error("failed to write to stderr: \(error)")
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}
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}
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}
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if configuredStreams > 0 {
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self.state.withLock {
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$0.ioTracker = .init(stream: stream, cont: cc, configuredStreams: configuredStreams)
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}
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}
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return handles
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}
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func startStdinRelay(handle: FileHandle) {
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guard let stdin = self.ioSetup.stdin else { return }
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self.state.withLock {
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$0.stdinRelay = Task {
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for await data in stdin.reader.stream() {
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do {
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try handle.write(contentsOf: data)
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} catch {
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self.logger?.error("failed to write to stdin: \(error)")
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break
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}
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}
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do {
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self.logger?.debug("stdin relay finished, closing")
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// There's two ways we can wind up here:
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//
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// 1. The stream finished on its own (e.g. we wrote all the
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// data) and we will close the underlying stdin in the guest below.
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//
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// 2. The client explicitly called closeStdin() themselves
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// which will cancel this relay task AFTER actually closing
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// the fds. If the client did that, then this task will be
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// cancelled, and the fds are already gone so there's nothing
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// for us to do.
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if Task.isCancelled {
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return
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}
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try await self._closeStdin()
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} catch {
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self.logger?.error("failed to close stdin: \(error)")
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}
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}
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}
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}
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/// Start the process.
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public func start() async throws {
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do {
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let spec = self.state.withLock { $0.spec }
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var listeners = [VsockListener?](repeating: nil, count: 3)
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if let stdin = self.ioSetup.stdin {
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listeners[0] = try self.vm.listen(stdin.port)
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}
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if let stdout = self.ioSetup.stdout {
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listeners[1] = try self.vm.listen(stdout.port)
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}
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if let stderr = self.ioSetup.stderr {
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if spec.process!.terminal {
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throw ContainerizationError(
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.invalidArgument,
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message: "stderr should not be configured with terminal=true"
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)
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}
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listeners[2] = try self.vm.listen(stderr.port)
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}
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let t = Task {
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try await self.setupIO(listeners: listeners)
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}
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try await agent.createProcess(
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id: self.id,
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containerID: self.owningContainer,
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stdinPort: self.ioSetup.stdin?.port,
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stdoutPort: self.ioSetup.stdout?.port,
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stderrPort: self.ioSetup.stderr?.port,
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ociRuntimePath: self.ociRuntimePath,
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configuration: spec,
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options: nil
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)
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let result = try await t.value
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let pid = try await self.agent.startProcess(
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id: self.id,
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containerID: self.owningContainer
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)
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// Start stdin relay after process launch to avoid filling the pipe
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// buffer before the process is even running.
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if let stdinHandle = result[0] {
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self.startStdinRelay(handle: stdinHandle)
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}
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self.state.withLock {
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$0.stdio = StdioHandles(
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stdin: result[0],
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stdout: result[1],
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stderr: result[2]
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)
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$0.pid = pid
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}
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} catch {
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if let err = error as? ContainerizationError {
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throw err
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}
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throw ContainerizationError(
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.internalError,
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message: "failed to start process",
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cause: error,
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)
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}
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}
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/// Kill the process with the specified signal.
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public func kill(_ signal: Signal) async throws {
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do {
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try await agent.signalProcess(
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id: self.id,
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containerID: self.owningContainer,
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signal: signal.rawValue
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)
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} catch {
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throw ContainerizationError(
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.internalError,
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message: "failed to kill process",
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cause: error
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)
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}
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}
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/// Resize the processes pty (if requested).
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public func resize(to: Terminal.Size) async throws {
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do {
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try await agent.resizeProcess(
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id: self.id,
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containerID: self.owningContainer,
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columns: UInt32(to.width),
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rows: UInt32(to.height)
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)
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} catch {
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throw ContainerizationError(
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.internalError,
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message: "failed to resize process",
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cause: error
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)
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}
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}
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public func closeStdin() async throws {
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do {
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try await self._closeStdin()
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self.state.withLock {
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$0.stdinRelay?.cancel()
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}
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} catch {
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throw ContainerizationError(
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.internalError,
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message: "failed to close stdin",
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cause: error,
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)
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}
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}
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func _closeStdin() async throws {
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try await self.agent.closeProcessStdin(
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id: self.id,
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containerID: self.owningContainer
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)
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}
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/// Wait on the process to exit with an optional timeout. Returns the exit code of the process.
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@discardableResult
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public func wait(timeoutInSeconds: Int64? = nil) async throws -> ExitStatus {
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do {
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let exitStatus = try await self.agent.waitProcess(
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id: self.id,
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containerID: self.owningContainer,
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timeoutInSeconds: timeoutInSeconds
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)
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await self.waitIoComplete()
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return exitStatus
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} catch {
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if error is ContainerizationError {
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throw error
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}
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throw ContainerizationError(
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.internalError,
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message: "failed to wait on process",
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cause: error
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)
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}
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}
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/// Wait until the standard output and standard error streams for the process have concluded.
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private func waitIoComplete() async {
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let ioTracker = self.state.withLock { $0.ioTracker }
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guard let ioTracker else {
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return
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}
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do {
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try await Timeout.run(seconds: 3) {
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var counter = ioTracker.configuredStreams
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for await _ in ioTracker.stream {
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counter -= 1
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if counter == 0 {
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ioTracker.cont.finish()
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break
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}
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}
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}
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} catch {
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self.logger?.error("timeout waiting for IO to complete for process \(id): \(error)")
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}
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self.state.withLock {
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$0.ioTracker = nil
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}
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}
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/// Cleans up guest state and waits on and closes any host resources (stdio handles).
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public func delete() async throws {
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try await self._delete()
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await self.onDelete?()
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}
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func _delete() async throws {
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let task = self.state.withLock { state in
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if let existingTask = state.deletionTask {
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// Deletion already in progress or finished.
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return existingTask
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}
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let task = Task<Void, Error> {
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try await self.performDeletion()
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}
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state.deletionTask = task
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return task
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}
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try await task.value
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}
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private func performDeletion() async throws {
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do {
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try await self.agent.deleteProcess(
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id: self.id,
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containerID: self.owningContainer
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)
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} catch {
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self.state.withLock {
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$0.stdinRelay?.cancel()
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try? $0.stdio.close()
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}
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try? await self.agent.close()
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throw ContainerizationError(
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.internalError,
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message: "failed to delete process",
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cause: error,
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)
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}
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do {
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try self.state.withLock {
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$0.stdinRelay?.cancel()
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try $0.stdio.close()
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}
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} catch {
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try? await self.agent.close()
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throw ContainerizationError(
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.internalError,
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message: "failed to close stdio",
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cause: error,
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)
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}
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do {
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try await self.agent.close()
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} catch {
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throw ContainerizationError(
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.internalError,
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message: "failed to close agent connection",
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cause: error,
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)
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}
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}
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}
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