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Results 1 - 10 of 67 for certificate (0.24 sec)
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okhttp-tls/src/main/kotlin/okhttp3/tls/internal/der/Certificate.kt
val data = CertificateAdapters.certificate.toDer(this) try { val certificateFactory = CertificateFactory.getInstance("X.509") val certificates = certificateFactory.generateCertificates(Buffer().write(data).inputStream()) return certificates.single() as X509Certificate } catch (e: NoSuchElementException) { throw IllegalArgumentException("failed to decode certificate", e) } catch (e: IllegalArgumentException) {
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okhttp-tls/src/test/java/okhttp3/tls/HeldCertificateTest.kt
val certificate = heldCertificate.certificate assertThat(certificate.getSubjectX500Principal().name, "self-signed") .isEqualTo(certificate.getIssuerX500Principal().name) assertThat(certificate.getIssuerX500Principal().name).matches(Regex("CN=[0-9a-f-]{36}")) assertThat(certificate.serialNumber).isEqualTo(BigInteger.ONE) assertThat(certificate.subjectAlternativeNames).isNull()
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docs/changelogs/changelog_4x.md
``` Get these strings with `HeldCertificate.certificatePem()` and `privateKeyPkcs8Pem()`. * Fix: Handshake now returns peer certificates in canonical order: each certificate is signed by the certificate that follows and the last certificate is signed by a trusted root. * Fix: Don't lose HTTP/2 flow control bytes when incoming data races with a stream close. If this
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mockwebserver/src/test/java/mockwebserver3/MockResponseSniTest.kt
.build() val handshakeCertificates = HandshakeCertificates.Builder() .heldCertificate(heldCertificate) .addTrustedCertificate(heldCertificate.certificate) .build() server.useHttps(handshakeCertificates.sslSocketFactory()) val dns = Dns { Dns.SYSTEM.lookup(server.hostName) } val client =
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okhttp/src/main/kotlin/okhttp3/internal/connection/RealConnection.kt
if (routes == null || !routeMatchesAny(routes)) return false // 3. This connection's server certificate's must cover the new host. if (address.hostnameVerifier !== OkHostnameVerifier) return false if (!supportsUrl(address.url)) return false // 4. Certificate pinning must match the host. try { address.certificatePinner!!.check(address.url.host, handshake()!!.peerCertificates)
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okhttp/src/test/java/okhttp3/OpenJSSETest.kt
.build() val handshakeCertificates = HandshakeCertificates.Builder() .heldCertificate(heldCertificate) .addTrustedCertificate(heldCertificate.certificate) .build() client = client.newBuilder() .sslSocketFactory( handshakeCertificates.sslSocketFactory(), handshakeCertificates.trustManager, )
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okhttp-tls/src/main/kotlin/okhttp3/tls/HeldCertificate.kt
* certificate can sign other certificates (but those certificates cannot themselves sign * certificates). Set this to 1 so this certificate can sign intermediate certificates that can * themselves sign certificates. Add one for each additional layer of intermediates to permit. */ fun certificateAuthority(maxIntermediateCas: Int) = apply {
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okhttp-tls/src/main/kotlin/okhttp3/tls/internal/der/DerAdapter.kt
* limitations under the License. */ package okhttp3.tls.internal.der import okio.Buffer import okio.ByteString /** * Encode and decode a model object like a [Long] or [Certificate] as DER bytes. */ internal interface DerAdapter<T> { /** Returns true if this adapter can read [header] in a choice. */ fun matches(header: DerHeader): Boolean /** * Returns a value from this adapter.
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okhttp/src/main/kotlin/okhttp3/CertificatePinner.kt
* `api.publicobject.com` are valid if either A's or B's certificate is in the chain. * * ## Warning: Certificate Pinning is Dangerous! * * Pinning certificates limits your server team's abilities to update their TLS certificates. By * pinning certificates, you take on additional operational complexity and limit your ability to * migrate between certificate authorities. Do not use certificate pinning without the blessing of
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okhttp-tls/src/main/kotlin/okhttp3/tls/Certificates.kt
throw IllegalArgumentException("failed to decode certificate", nsee) } catch (iae: IllegalArgumentException) { throw IllegalArgumentException("failed to decode certificate", iae) } catch (e: GeneralSecurityException) { throw IllegalArgumentException("failed to decode certificate", e) } } /** * Returns the certificate encoded in [PEM format][rfc_7468]. * * [rfc_7468]: https://tools.ietf.org/html/rfc7468 */
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