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  1. docs/pt/docs/deployment/https.md

    * A criptografia da conexão acontece no nível TCP.
        * Essa é uma camada abaixo do HTTP.
        * Portanto, o manuseio do certificado e da criptografia é feito antes do HTTP.
    * O TCP não sabe sobre "domínios". Apenas sobre endereços IP.
        * As informações sobre o domínio solicitado vão nos dados HTTP.
    * Os certificados HTTPS “certificam” um determinado domínio, mas o protocolo e a encriptação acontecem ao nível do TCP, antes de sabermos de que domínio se trata.
    Registered: Sun Nov 03 07:19:11 UTC 2024
    - Last Modified: Tue Aug 06 04:48:30 UTC 2024
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  2. 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) {
    Registered: Fri Nov 01 11:42:11 UTC 2024
    - Last Modified: Mon Jan 08 01:13:22 UTC 2024
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  3. docs/fr/docs/deployment/https.md

    Maintenant, du point de vue d'un développeur, voici plusieurs choses à avoir en tête en pensant au HTTPS :
    
    * Pour le HTTPS, le serveur a besoin de "certificats" générés par une tierce partie.
        * Ces certificats sont en fait acquis auprès de la tierce partie, et non "générés".
    * Les certificats ont une durée de vie.
        * Ils expirent.
        * Puis ils doivent être renouvelés et acquis à nouveau auprès de la tierce partie.
    Registered: Sun Nov 03 07:19:11 UTC 2024
    - Last Modified: Tue Aug 06 04:48:30 UTC 2024
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  4. okhttp/src/test/java/okhttp3/CertificatePinnerTest.kt

        }
    
        // Should not be pinned:
        certificatePinner.check("uk", listOf(certB1.certificate))
        certificatePinner.check("co.uk", listOf(certB1.certificate))
        certificatePinner.check("anotherexample.co.uk", listOf(certB1.certificate))
        certificatePinner.check("foo.anotherexample.co.uk", listOf(certB1.certificate))
      }
    
      @Test
      fun testBadPin() {
    Registered: Fri Nov 01 11:42:11 UTC 2024
    - Last Modified: Mon Jan 08 01:13:22 UTC 2024
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  5. okhttp-tls/src/main/kotlin/okhttp3/tls/HeldCertificate.kt

     * ```
     *
     * In this example the HTTP client already knows and trusts the last certificate, "Entrust Root
     * Certification Authority - G2". That certificate is used to verify the signature of the
     * intermediate certificate, "Entrust Certification Authority - L1M". The intermediate certificate
     * is used to verify the signature of the "www.squareup.com" certificate.
     *
    Registered: Fri Nov 01 11:42:11 UTC 2024
    - Last Modified: Mon Jan 08 01:13:22 UTC 2024
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  6. okhttp/src/test/java/okhttp3/CertificateChainCleanerTest.kt

            .serialNumber(1L)
            .build()
        val rootB =
          HeldCertificate.Builder()
            .serialNumber(2L)
            .build()
        assertThat(get(rootB.certificate, rootA.certificate))
          .isEqualTo(get(rootA.certificate, rootB.certificate))
      }
    
      @Test
      fun equalsFromTrustManager() {
        val handshakeCertificates = HandshakeCertificates.Builder().build()
    Registered: Fri Nov 01 11:42:11 UTC 2024
    - Last Modified: Mon Jan 08 01:13:22 UTC 2024
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  7. okhttp-tls/README.md

        .heldCertificate(serverCertificate, intermediateCertificate.certificate())
        .build();
    ```
    
    The client only needs to know the trusted root certificate. It checks the server's certificate by
    validating the signatures within the chain.
    
    ```java
    HandshakeCertificates clientCertificates = new HandshakeCertificates.Builder()
        .addTrustedCertificate(rootCertificate.certificate())
        .build();
    Registered: Fri Nov 01 11:42:11 UTC 2024
    - Last Modified: Sun Dec 17 15:34:10 UTC 2023
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  8. docs/tls/README.md

    ```
    
    ### 3.2 Use OpenSSL to Generate a Certificate
    
    Use one of the following methods to generate a certificate using `openssl`:
    
    * 3.2.1 [Generate a private key with ECDSA](#generate-private-key-with-ecdsa)
    * 3.2.2 [Generate a private key with RSA](#generate-private-key-with-rsa)
    * 3.2.3 [Generate a self-signed certificate](#generate-a-self-signed-certificate)
    
    #### 3.2.1 Generate a private key with ECDSA
    
    Registered: Sun Nov 03 19:28:11 UTC 2024
    - Last Modified: Thu Sep 29 04:28:45 UTC 2022
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  9. okhttp-tls/src/main/kotlin/okhttp3/tls/HandshakeCertificates.kt

     *
     *  * The server's handshake certificates must have a [held certificate][HeldCertificate] (a
     *    certificate and its private key). The certificate's subject alternative names must match the
     *    server's hostname. The server must also have is a (possibly-empty) chain of intermediate
     *    certificates to establish trust from a root certificate to the server's certificate. The root
     *    certificate is not included in this chain.
    Registered: Fri Nov 01 11:42:11 UTC 2024
    - Last Modified: Mon Jan 08 01:13:22 UTC 2024
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  10. okhttp-tls/src/test/java/okhttp3/tls/internal/der/DerCertificatesTest.kt

        val certificate =
          HeldCertificate.Builder()
            .keyPair(publicKey, privateKey)
            .build()
    
        val certificateByteString = certificate.certificate.encoded.toByteString()
    
        val okHttpCertificate =
          CertificateAdapters.certificate
            .fromDer(certificateByteString)
    
    Registered: Fri Nov 01 11:42:11 UTC 2024
    - Last Modified: Mon Jan 08 01:13:22 UTC 2024
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