feat(ios): device client-cert mTLS — ClientTLS package, transport wiring, install UX (C-iOS)
- ios/Packages/ClientTLS: SecIdentity wrapper, PKCS12 importer (typed errors), keychain store
(AfterFirstUnlockThisDeviceOnly), pure MutualTLSChallengeResponder truth table, cross-platform
X.509 DER summary. 14/14 tests.
- Both transports (SessionCore URLSessionTermTransport, App URLSessionHTTPTransport) + SessionThumbnail
take a lazy @Sendable ()->ClientIdentity? provider: WS resolves per-connect, HTTP per client-cert
challenge, so a freshly-imported cert applies without an app relaunch. AppEnvironment injects
{ store.loadedIdentityOrNil() }.
- ClientCertScreen (.fileImporter([.pkcs12]) + passphrase -> import -> keychain), reachable via a
设备证书 entry in SessionListScreen.hostMenu. PairingViewModel gates tunnel-host probes on cert
presence and re-maps mTLS-reject to a clientCertRejected message.
Verified: ClientTLS 14/14, SessionCore 93/93, xcodegen + xcodebuild BUILD SUCCEEDED.
This commit is contained in:
@@ -0,0 +1,188 @@
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import Foundation
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import Security
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/// C-iOS-3 · Display summary of a device certificate, shown on the install /
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/// rotation screen so the user can confirm *which* cert is active and *when*
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/// it expires before relying on it.
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public struct ClientCertificateSummary: Equatable, Sendable {
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/// Subject common name — the device/leaf CN (e.g. `t1-iphone`).
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public let subjectCommonName: String?
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/// Issuer common name — the device-CA CN (e.g. `webterm-device-ca`).
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public let issuerCommonName: String?
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/// Not-after date; `nil` if it could not be parsed.
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public let notAfter: Date?
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public init(subjectCommonName: String?, issuerCommonName: String?, notAfter: Date?) {
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self.subjectCommonName = subjectCommonName
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self.issuerCommonName = issuerCommonName
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self.notAfter = notAfter
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}
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/// Expired relative to `now` (defaults to the current instant). Unknown
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/// expiry is treated as NOT expired (fail-open for display only — the TLS
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/// stack, not this label, is the real gate).
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public func isExpired(asOf now: Date = Date()) -> Bool {
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guard let notAfter else { return false }
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return notAfter < now
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}
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}
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/// Reads the display fields off a `SecCertificate`.
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///
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/// Implemented as a minimal X.509 DER walk over `SecCertificateCopyData` rather
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/// than `SecCertificateCopyValues`, because that API and its `kSecOID*` /
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/// `kSecPropertyKey*` constants are **macOS-only** — unavailable on iOS, which
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/// is the real deployment target. The DER walk is identical on both platforms
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/// and unit-testable against the fixture. Any parse miss degrades to `nil`
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/// fields (the summary is display-only; the TLS stack is the gate).
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enum CertificateInspector {
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static func summary(of certificate: SecCertificate) -> ClientCertificateSummary {
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let der = [UInt8](SecCertificateCopyData(certificate) as Data)
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let fields = X509Fields.parse(der: der)
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return ClientCertificateSummary(
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subjectCommonName: fields?.subjectCommonName,
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issuerCommonName: fields?.issuerCommonName,
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notAfter: fields?.notAfter
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)
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}
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}
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// MARK: - Minimal ASN.1 DER reader
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/// One tag-length-value element, as byte ranges into the source buffer.
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private struct DERElement {
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let tag: UInt8
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let valueStart: Int
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let valueEnd: Int
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}
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private enum DER {
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/// DER tags used here.
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static let sequence: UInt8 = 0x30
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static let set: UInt8 = 0x31
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static let oid: UInt8 = 0x06
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static let contextTag0: UInt8 = 0xA0 // [0] EXPLICIT (X.509 version)
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static let utcTime: UInt8 = 0x17
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static let generalizedTime: UInt8 = 0x18
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/// Read a single TLV at `start`. Returns the element and the index just
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/// past it, or `nil` on any malformed length/overrun (defensive: the cert
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/// bytes come from the system but are still parsed as untrusted input).
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static func read(_ bytes: [UInt8], at start: Int) -> DERElement? {
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guard start >= 0, start + 1 < bytes.count else { return nil }
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let tag = bytes[start]
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var index = start + 1
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let firstLengthByte = bytes[index]
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index += 1
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var length = 0
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if firstLengthByte & 0x80 == 0 {
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length = Int(firstLengthByte)
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} else {
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let byteCount = Int(firstLengthByte & 0x7F)
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guard byteCount > 0, byteCount <= 4, index + byteCount <= bytes.count else {
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return nil
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}
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for _ in 0..<byteCount {
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length = (length << 8) | Int(bytes[index])
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index += 1
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}
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}
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let valueEnd = index + length
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guard length >= 0, valueEnd <= bytes.count else { return nil }
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return DERElement(tag: tag, valueStart: index, valueEnd: valueEnd)
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}
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/// Split a constructed value `[start, end)` into its immediate children.
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static func children(_ bytes: [UInt8], from start: Int, to end: Int) -> [DERElement] {
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var elements: [DERElement] = []
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var index = start
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while index < end, let element = read(bytes, at: index) {
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elements.append(element)
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index = element.valueEnd
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}
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return elements
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}
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}
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// MARK: - X.509 field extraction
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private struct X509Fields {
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let subjectCommonName: String?
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let issuerCommonName: String?
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let notAfter: Date?
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/// CommonName attribute OID `2.5.4.3` → DER content bytes `55 04 03`.
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private static let commonNameOID: [UInt8] = [0x55, 0x04, 0x03]
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/// Certificate ::= SEQUENCE { tbsCertificate, signatureAlgorithm, signature }
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/// tbsCertificate ::= SEQUENCE { [0] version?, serialNumber, signature,
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/// issuer Name, validity, subject Name, subjectPublicKeyInfo, ... }
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static func parse(der bytes: [UInt8]) -> X509Fields? {
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guard let certificate = DER.read(bytes, at: 0), certificate.tag == DER.sequence else {
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return nil
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}
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let certChildren = DER.children(
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bytes, from: certificate.valueStart, to: certificate.valueEnd
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)
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guard let tbs = certChildren.first, tbs.tag == DER.sequence else { return nil }
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var tbsChildren = DER.children(bytes, from: tbs.valueStart, to: tbs.valueEnd)
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// Optional EXPLICIT [0] version — drop it so the fixed fields align.
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if let first = tbsChildren.first, first.tag == DER.contextTag0 {
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tbsChildren.removeFirst()
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}
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// Fixed order after (optional) version: serialNumber, signature,
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// issuer, validity, subject, ...
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guard tbsChildren.count >= 5 else { return nil }
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let issuer = tbsChildren[2]
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let validity = tbsChildren[3]
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let subject = tbsChildren[4]
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return X509Fields(
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subjectCommonName: commonName(bytes, in: subject),
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issuerCommonName: commonName(bytes, in: issuer),
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notAfter: notAfterDate(bytes, in: validity)
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)
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}
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/// Name ::= SEQUENCE OF RDN(SET) OF AttributeTypeAndValue(SEQ{OID, value}).
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/// Returns the first CN value found.
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private static func commonName(_ bytes: [UInt8], in name: DERElement) -> String? {
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for rdn in DER.children(bytes, from: name.valueStart, to: name.valueEnd)
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where rdn.tag == DER.set {
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for atv in DER.children(bytes, from: rdn.valueStart, to: rdn.valueEnd)
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where atv.tag == DER.sequence {
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let parts = DER.children(bytes, from: atv.valueStart, to: atv.valueEnd)
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guard parts.count >= 2, parts[0].tag == DER.oid else { continue }
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let oid = Array(bytes[parts[0].valueStart..<parts[0].valueEnd])
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if oid == commonNameOID {
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let value = Array(bytes[parts[1].valueStart..<parts[1].valueEnd])
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// PrintableString / UTF8String both decode as UTF-8.
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return String(bytes: value, encoding: .utf8)
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}
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}
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}
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return nil
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}
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/// Validity ::= SEQUENCE { notBefore Time, notAfter Time } — the 2nd child.
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private static func notAfterDate(_ bytes: [UInt8], in validity: DERElement) -> Date? {
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let times = DER.children(bytes, from: validity.valueStart, to: validity.valueEnd)
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guard times.count >= 2 else { return nil }
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let notAfter = times[1]
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let value = Array(bytes[notAfter.valueStart..<notAfter.valueEnd])
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guard let text = String(bytes: value, encoding: .ascii) else { return nil }
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return parseTime(text, tag: notAfter.tag)
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}
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private static func parseTime(_ text: String, tag: UInt8) -> Date? {
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let formatter = DateFormatter()
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formatter.locale = Locale(identifier: "en_US_POSIX")
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formatter.timeZone = TimeZone(identifier: "UTC")
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// UTCTime: YYMMDDHHMMSSZ (used for years < 2050); GeneralizedTime:
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// YYYYMMDDHHMMSSZ. The 2-digit-year window covers the relevant range
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// (device certs live in the 2020s-2040s).
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formatter.dateFormat = tag == DER.utcTime ? "yyMMddHHmmss'Z'" : "yyyyMMddHHmmss'Z'"
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return formatter.date(from: text)
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}
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}
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@@ -0,0 +1,55 @@
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import Foundation
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import Security
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/// C-iOS-1 · An imported device client identity: the `SecIdentity` (leaf
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/// certificate + its private key) plus the issuer chain that accompanies it in
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/// the TLS handshake.
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///
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/// `@unchecked Sendable`: `SecIdentity` / `SecCertificate` are CoreFoundation
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/// handles that are immutable once imported and thread-safe to read; this value
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/// only ever holds finished imports and never mutates them. Marking it lets the
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/// identity flow into the `@unchecked Sendable` WS connection and the URLSession
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/// delegates that answer client-certificate challenges.
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public struct ClientIdentity: @unchecked Sendable {
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/// The leaf certificate + private key used to authenticate to the server.
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public let secIdentity: SecIdentity
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/// Issuer certificates to present alongside the leaf (the CA chain, leaf
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/// excluded). May be empty when the trust anchor is already pinned server
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/// side (nginx `ssl_client_certificate` = the device-CA) — the leaf alone
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/// then verifies at `ssl_verify_depth 1`.
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public let issuerCertificates: [SecCertificate]
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public init(secIdentity: SecIdentity, issuerCertificates: [SecCertificate] = []) {
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self.secIdentity = secIdentity
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self.issuerCertificates = issuerCertificates
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}
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/// The `URLCredential` handed back to a `ClientCertificate` auth challenge.
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///
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/// `.forSession` (not `.permanent`) per plan §C-iOS-1: the identity already
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/// lives in the app's keychain item — persisting the credential in the
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/// shared URL credential store would be a second, unmanaged copy.
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public func urlCredential(
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persistence: URLCredential.Persistence = .forSession
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) -> URLCredential {
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URLCredential(
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identity: secIdentity,
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certificates: issuerCertificates.isEmpty ? nil : issuerCertificates,
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persistence: persistence
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)
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}
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/// The leaf `SecCertificate` backing this identity (for display / summary).
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public func leafCertificate() -> SecCertificate? {
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var certificate: SecCertificate?
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let status = SecIdentityCopyCertificate(secIdentity, &certificate)
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return status == errSecSuccess ? certificate : nil
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}
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/// Human-readable summary of the leaf certificate (subject CN, issuer CN,
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/// expiry) for the install/rotation UI. `nil` only if the leaf can't be
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/// read (should never happen for a valid import).
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public func summary() -> ClientCertificateSummary? {
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leafCertificate().map(CertificateInspector.summary(of:))
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}
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}
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@@ -0,0 +1,36 @@
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import Foundation
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/// C-iOS-2 · Reusable `NSObject` URLSession delegate that answers
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/// **session-level** auth challenges by delegating to `MutualTLSChallengeResponder`.
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///
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/// This is the seam for the HTTP transport (`session.data(for:)` surfaces
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/// challenges through `urlSession(_:didReceive:completionHandler:)`). The WS
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/// transport can't reuse it — its connection object is already the session's
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/// delegate and needs the **task-level** callback — so that one implements the
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/// task-level method itself against the same responder.
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///
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/// `@unchecked Sendable`: URLSession retains its delegate and invokes it from
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/// arbitrary queues; every stored field is an immutable `let` over thread-safe
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/// values (`ClientIdentity` is `@unchecked Sendable`, the responder is stateless).
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public final class ClientTLSSessionDelegate: NSObject, URLSessionDelegate, @unchecked Sendable {
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private let identity: ClientIdentity?
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private let responder: MutualTLSChallengeResponder
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public init(
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identity: ClientIdentity?,
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responder: MutualTLSChallengeResponder = MutualTLSChallengeResponder()
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) {
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self.identity = identity
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self.responder = responder
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super.init()
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}
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public func urlSession(
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_ session: URLSession,
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didReceive challenge: URLAuthenticationChallenge,
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completionHandler: @escaping (URLSession.AuthChallengeDisposition, URLCredential?) -> Void
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) {
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let resolution = responder.resolve(challenge, identity: identity)
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completionHandler(resolution.disposition, resolution.credential)
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}
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}
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@@ -0,0 +1,200 @@
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import Foundation
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import os
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import Security
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/// Persists the device identity so it survives relaunch. The raw `.p12` bytes
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/// **and** its passphrase are stored together (the passphrase is required to
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/// re-import via `SecPKCS12Import` at every launch), then re-imported on load.
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public protocol ClientIdentityStore: Sendable {
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/// Validate (`SecPKCS12Import`) then persist the `.p12` + passphrase.
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/// Throws `PKCS12ImportError` on a bad passphrase / corrupt file (nothing is
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/// persisted in that case) and `ClientIdentityStoreError` on a storage fault.
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func save(p12Data: Data, passphrase: String) throws
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/// Re-import and return the stored identity; `nil` if none is installed.
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func loadIdentity() throws -> ClientIdentity?
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/// Display summary of the stored certificate; `nil` if none is installed.
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func loadSummary() throws -> ClientCertificateSummary?
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/// Delete the stored identity (rotation / removal). Idempotent.
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func remove() throws
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/// Cheap existence check for gating (does NOT re-import).
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func hasInstalledIdentity() -> Bool
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}
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public enum ClientIdentityStoreError: Error, Equatable, Sendable {
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/// A Keychain `SecItem*` call failed with this `OSStatus`.
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case keychain(OSStatus)
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/// The stored blob was present but could not be decoded.
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case corruptStoredBlob
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}
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public extension ClientIdentityStore {
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/// Convenience for composition roots: load the identity, logging and
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/// swallowing errors into `nil`. A missing cert is the normal pre-install
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/// state; a genuine fault must not crash launch, but is logged (never
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/// silently dropped).
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func loadedIdentityOrNil() -> ClientIdentity? {
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do {
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return try loadIdentity()
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} catch {
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ClientTLSLog.identity.error(
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"loadIdentity failed: \(String(describing: error), privacy: .public)"
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)
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return nil
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}
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}
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}
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/// The stored payload — `.p12` bytes plus the passphrase needed to re-import.
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private struct StoredP12Blob: Codable {
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let p12: Data
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let passphrase: String
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}
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/// Keychain-backed store: one `kSecClassGenericPassword` item holding the
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/// JSON-encoded `StoredP12Blob` in `kSecValueData`, protected with
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/// `kSecAttrAccessibleAfterFirstUnlockThisDeviceOnly` (available after the first
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/// unlock post-boot, never migrates off this device).
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public struct KeychainClientIdentityStore: ClientIdentityStore {
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public static let defaultService = "com.yaojia.webterm.clienttls"
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public static let defaultAccount = "device-identity"
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private let service: String
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private let account: String
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public init(
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service: String = defaultService, account: String = defaultAccount
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) {
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self.service = service
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self.account = account
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}
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public func save(p12Data: Data, passphrase: String) throws {
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// Validate BEFORE persisting — a wrong passphrase / corrupt file must
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// surface to the install UI and leave any prior identity untouched.
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_ = try PKCS12Importer.importIdentity(data: p12Data, passphrase: passphrase)
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let blob = try encode(StoredP12Blob(p12: p12Data, passphrase: passphrase))
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try writeItem(blob)
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}
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public func loadIdentity() throws -> ClientIdentity? {
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guard let blob = try readBlob() else { return nil }
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return try PKCS12Importer.importIdentity(
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data: blob.p12, passphrase: blob.passphrase
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)
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}
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|
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public func loadSummary() throws -> ClientCertificateSummary? {
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try loadIdentity()?.summary()
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}
|
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|
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public func remove() throws {
|
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let status = SecItemDelete(baseQuery() as CFDictionary)
|
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guard status == errSecSuccess || status == errSecItemNotFound else {
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throw ClientIdentityStoreError.keychain(status)
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}
|
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}
|
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|
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public func hasInstalledIdentity() -> Bool {
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var query = baseQuery()
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query[kSecReturnData as String] = false
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query[kSecMatchLimit as String] = kSecMatchLimitOne
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return SecItemCopyMatching(query as CFDictionary, nil) == errSecSuccess
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}
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|
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// MARK: - Keychain plumbing
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private func baseQuery() -> [String: Any] {
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[
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kSecClass as String: kSecClassGenericPassword,
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||||
kSecAttrService as String: service,
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kSecAttrAccount as String: account,
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]
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}
|
||||
|
||||
private func writeItem(_ data: Data) throws {
|
||||
// Delete-then-add keeps the item's protection class deterministic
|
||||
// (SecItemUpdate can't change kSecAttrAccessible in place).
|
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let deleteStatus = SecItemDelete(baseQuery() as CFDictionary)
|
||||
guard deleteStatus == errSecSuccess || deleteStatus == errSecItemNotFound else {
|
||||
throw ClientIdentityStoreError.keychain(deleteStatus)
|
||||
}
|
||||
var attributes = baseQuery()
|
||||
attributes[kSecValueData as String] = data
|
||||
attributes[kSecAttrAccessible as String] =
|
||||
kSecAttrAccessibleAfterFirstUnlockThisDeviceOnly
|
||||
let addStatus = SecItemAdd(attributes as CFDictionary, nil)
|
||||
guard addStatus == errSecSuccess else {
|
||||
throw ClientIdentityStoreError.keychain(addStatus)
|
||||
}
|
||||
}
|
||||
|
||||
private func readBlob() throws -> StoredP12Blob? {
|
||||
var query = baseQuery()
|
||||
query[kSecReturnData as String] = true
|
||||
query[kSecMatchLimit as String] = kSecMatchLimitOne
|
||||
var result: CFTypeRef?
|
||||
let status = SecItemCopyMatching(query as CFDictionary, &result)
|
||||
if status == errSecItemNotFound { return nil }
|
||||
guard status == errSecSuccess, let data = result as? Data else {
|
||||
throw ClientIdentityStoreError.keychain(status)
|
||||
}
|
||||
do {
|
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return try JSONDecoder().decode(StoredP12Blob.self, from: data)
|
||||
} catch {
|
||||
throw ClientIdentityStoreError.corruptStoredBlob
|
||||
}
|
||||
}
|
||||
|
||||
private func encode(_ blob: StoredP12Blob) throws -> Data {
|
||||
do {
|
||||
return try JSONEncoder().encode(blob)
|
||||
} catch {
|
||||
throw ClientIdentityStoreError.corruptStoredBlob
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
/// In-memory store for previews and unit tests: same import/summary code path as
|
||||
/// the keychain store (so the roundtrip is exercised) without any keychain
|
||||
/// entitlement. `@unchecked Sendable` — mutable blob guarded by a lock.
|
||||
public final class InMemoryClientIdentityStore: ClientIdentityStore, @unchecked Sendable {
|
||||
private let lock = NSLock()
|
||||
private var blob: StoredP12BlobBox?
|
||||
|
||||
/// Boxed so the private `StoredP12Blob` type stays file-private above; this
|
||||
/// mirror keeps the two bytes+passphrase without exposing the Codable type.
|
||||
private struct StoredP12BlobBox {
|
||||
let p12: Data
|
||||
let passphrase: String
|
||||
}
|
||||
|
||||
public init() {}
|
||||
|
||||
public func save(p12Data: Data, passphrase: String) throws {
|
||||
_ = try PKCS12Importer.importIdentity(data: p12Data, passphrase: passphrase)
|
||||
lock.withLock { blob = StoredP12BlobBox(p12: p12Data, passphrase: passphrase) }
|
||||
}
|
||||
|
||||
public func loadIdentity() throws -> ClientIdentity? {
|
||||
guard let stored = lock.withLock({ blob }) else { return nil }
|
||||
return try PKCS12Importer.importIdentity(
|
||||
data: stored.p12, passphrase: stored.passphrase
|
||||
)
|
||||
}
|
||||
|
||||
public func loadSummary() throws -> ClientCertificateSummary? {
|
||||
try loadIdentity()?.summary()
|
||||
}
|
||||
|
||||
public func remove() throws {
|
||||
lock.withLock { blob = nil }
|
||||
}
|
||||
|
||||
public func hasInstalledIdentity() -> Bool {
|
||||
lock.withLock { blob != nil }
|
||||
}
|
||||
}
|
||||
|
||||
enum ClientTLSLog {
|
||||
static let identity = Logger(subsystem: "com.yaojia.webterm", category: "client-tls")
|
||||
}
|
||||
@@ -0,0 +1,73 @@
|
||||
import Foundation
|
||||
|
||||
/// C-iOS-1 · The pure, synchronous decision at the heart of mutual TLS.
|
||||
///
|
||||
/// It maps a URLSession auth challenge (+ the optionally-installed device
|
||||
/// identity) to a disposition and credential. Deliberately free of any
|
||||
/// URLSession / socket state so the full truth table is unit-testable without a
|
||||
/// live connection — the transports (WS task delegate, HTTP session delegate)
|
||||
/// are thin adapters that call `resolve` and forward its result to the
|
||||
/// completion handler.
|
||||
///
|
||||
/// Truth table (plan §C-iOS-1):
|
||||
/// a. `ClientCertificate` + identity present → `.useCredential` with the
|
||||
/// identity's `URLCredential`.
|
||||
/// b. `ClientCertificate` + no identity → `.cancelAuthenticationChallenge`
|
||||
/// (a clean, classifiable failure — never a silent no-cert continue).
|
||||
/// c. `ServerTrust` → `.performDefaultHandling`
|
||||
/// (the LE wildcard is validated by the system trust store).
|
||||
/// d. anything else → `.performDefaultHandling`.
|
||||
public struct MutualTLSChallengeResponder: Sendable {
|
||||
/// The responder's decision. Not `Sendable` (it may carry a `URLCredential`,
|
||||
/// which isn't) — it is produced and consumed synchronously on the delegate
|
||||
/// queue, never sent across isolation domains.
|
||||
public struct Resolution {
|
||||
public let disposition: URLSession.AuthChallengeDisposition
|
||||
public let credential: URLCredential?
|
||||
|
||||
public init(
|
||||
disposition: URLSession.AuthChallengeDisposition,
|
||||
credential: URLCredential? = nil
|
||||
) {
|
||||
self.disposition = disposition
|
||||
self.credential = credential
|
||||
}
|
||||
}
|
||||
|
||||
public init() {}
|
||||
|
||||
/// Resolve a full `URLAuthenticationChallenge` by dispatching on its
|
||||
/// authentication method.
|
||||
public func resolve(
|
||||
_ challenge: URLAuthenticationChallenge, identity: ClientIdentity?
|
||||
) -> Resolution {
|
||||
resolve(
|
||||
authenticationMethod: challenge.protectionSpace.authenticationMethod,
|
||||
identity: identity
|
||||
)
|
||||
}
|
||||
|
||||
/// Method-keyed core (challenge-free) — the directly-tested pure function.
|
||||
public func resolve(
|
||||
authenticationMethod: String, identity: ClientIdentity?
|
||||
) -> Resolution {
|
||||
switch authenticationMethod {
|
||||
case NSURLAuthenticationMethodClientCertificate:
|
||||
guard let identity else {
|
||||
// (b) No installed identity: cancel so the failure surfaces as a
|
||||
// classifiable client-cert error rather than a bare TLS reset.
|
||||
return Resolution(disposition: .cancelAuthenticationChallenge)
|
||||
}
|
||||
// (a) Present the device certificate for this session.
|
||||
return Resolution(
|
||||
disposition: .useCredential, credential: identity.urlCredential()
|
||||
)
|
||||
case NSURLAuthenticationMethodServerTrust:
|
||||
// (c) System-trusted LE wildcard — default evaluation.
|
||||
return Resolution(disposition: .performDefaultHandling)
|
||||
default:
|
||||
// (d) Basic/Digest/NTLM/etc. — not used by this app; default.
|
||||
return Resolution(disposition: .performDefaultHandling)
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -0,0 +1,89 @@
|
||||
import Foundation
|
||||
import Security
|
||||
|
||||
/// Failure modes of a PKCS#12 import, each mapped to actionable install-UX copy
|
||||
/// (C-iOS-3). The three plan-named `OSStatus` mappings are honored:
|
||||
/// `errSecAuthFailed → .wrongPassphrase`, `errSecDecode → .corruptFile`, and any
|
||||
/// other non-success status (unsupported/unknown format — the plan's "errSecPkg"
|
||||
/// bucket) → `.unsupported`.
|
||||
public enum PKCS12ImportError: Error, Equatable, Sendable {
|
||||
/// Wrong passphrase (`errSecAuthFailed`).
|
||||
case wrongPassphrase
|
||||
/// Not a decodable PKCS#12 blob (`errSecDecode`) — truncated / not a `.p12`.
|
||||
case corruptFile
|
||||
/// Decoded, but the format/algorithms aren't importable on this OS
|
||||
/// (any other non-success `OSStatus`). Retains the raw status for logs.
|
||||
case unsupported(OSStatus)
|
||||
/// Import succeeded but carried no `SecIdentity` (e.g. a certs-only `.p12`).
|
||||
case noIdentity
|
||||
|
||||
public static func == (lhs: PKCS12ImportError, rhs: PKCS12ImportError) -> Bool {
|
||||
switch (lhs, rhs) {
|
||||
case (.wrongPassphrase, .wrongPassphrase),
|
||||
(.corruptFile, .corruptFile),
|
||||
(.noIdentity, .noIdentity):
|
||||
return true
|
||||
case let (.unsupported(a), .unsupported(b)):
|
||||
return a == b
|
||||
default:
|
||||
return false
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
/// Imports a `.p12` into a `ClientIdentity` via `SecPKCS12Import`.
|
||||
///
|
||||
/// Memory-only: `SecPKCS12Import` returns the identity/chain as CoreFoundation
|
||||
/// handles without writing to the keychain, so callers control persistence
|
||||
/// (see `KeychainClientIdentityStore`).
|
||||
public enum PKCS12Importer {
|
||||
public static func importIdentity(
|
||||
data: Data, passphrase: String
|
||||
) throws -> ClientIdentity {
|
||||
let options = [kSecImportExportPassphrase as String: passphrase] as CFDictionary
|
||||
var rawItems: CFArray?
|
||||
let status = SecPKCS12Import(data as CFData, options, &rawItems)
|
||||
|
||||
switch status {
|
||||
case errSecSuccess:
|
||||
break
|
||||
case errSecAuthFailed:
|
||||
throw PKCS12ImportError.wrongPassphrase
|
||||
case errSecDecode:
|
||||
throw PKCS12ImportError.corruptFile
|
||||
default:
|
||||
// Covers unsupported formats/algorithms and any other failure —
|
||||
// the plan's `errSecPkg → .unsupported` mapping (that symbol does
|
||||
// not exist in the SDK; the status is preserved for diagnostics).
|
||||
throw PKCS12ImportError.unsupported(status)
|
||||
}
|
||||
|
||||
guard let items = rawItems as? [[String: Any]], let first = items.first,
|
||||
let identityValue = first[kSecImportItemIdentity as String]
|
||||
else {
|
||||
throw PKCS12ImportError.noIdentity
|
||||
}
|
||||
// Force-cast is safe: `kSecImportItemIdentity` is always a SecIdentity.
|
||||
let secIdentity = identityValue as! SecIdentity
|
||||
let chain = (first[kSecImportItemCertChain as String] as? [SecCertificate]) ?? []
|
||||
return ClientIdentity(
|
||||
secIdentity: secIdentity,
|
||||
issuerCertificates: issuerChain(from: chain, identity: secIdentity)
|
||||
)
|
||||
}
|
||||
|
||||
/// The chain from `SecPKCS12Import` includes the leaf at index 0; the
|
||||
/// `URLCredential` must carry only the *issuer* certs (Apple: do not repeat
|
||||
/// the identity's own cert). Drops whichever chain entry DER-matches the
|
||||
/// identity's leaf.
|
||||
private static func issuerChain(
|
||||
from chain: [SecCertificate], identity: SecIdentity
|
||||
) -> [SecCertificate] {
|
||||
var leaf: SecCertificate?
|
||||
SecIdentityCopyCertificate(identity, &leaf)
|
||||
guard let leafData = leaf.map({ SecCertificateCopyData($0) as Data }) else {
|
||||
return chain
|
||||
}
|
||||
return chain.filter { SecCertificateCopyData($0) as Data != leafData }
|
||||
}
|
||||
}
|
||||
Reference in New Issue
Block a user