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Results 11 - 20 of 175 for tcp4 (0.05 sec)

  1. helm/minio/templates/ciliumnetworkpolicy.yaml

          app: {{ template "minio.name" . }}
          release: {{ .Release.Name }}
      ingress:
      - toPorts:
        - ports:
          - port: "{{ .Values.minioAPIPort }}"
            protocol: TCP
          - port: "{{ .Values.minioConsolePort }}"
            protocol: TCP
        {{- if not .Values.networkPolicy.allowExternal }}
        fromEndpoints:
        - matchLabels:
            {{ template "minio.name" . }}-client: "true"
        {{- end }}
      egress:
    Registered: Sun Nov 03 19:28:11 UTC 2024
    - Last Modified: Fri Apr 26 07:50:24 UTC 2024
    - 936 bytes
    - Viewed (0)
  2. internal/http/check_port_test.go

    	if runtime.GOOS != "linux" {
    		t.Skip()
    	}
    
    	l, err := net.Listen("tcp", "localhost:0") // ask kernel for a free port.
    	if err != nil {
    		t.Fatal(err)
    	}
    	defer l.Close()
    
    	port := l.Addr().(*net.TCPAddr).Port
    
    	testCases := []struct {
    		host        string
    		port        int
    		expectedErr error
    	}{
    		{"", port, fmt.Errorf("listen tcp :%v: bind: address already in use", port)},
    Registered: Sun Nov 03 19:28:11 UTC 2024
    - Last Modified: Wed May 03 21:12:25 UTC 2023
    - 1.9K bytes
    - Viewed (0)
  3. 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
    - 3.9K bytes
    - Viewed (0)
  4. internal/rest/rpc-stats.go

    	tcpTimeForFirstByteTotalDur uint64
    }{}
    
    // RPCStats holds information about the DHCP/TCP metrics and errors
    type RPCStats struct {
    	Errs uint64
    
    	DialAvgDuration uint64
    	TTFBAvgDuration uint64
    	DialErrs        uint64
    }
    
    // GetRPCStats returns RPC stats, include calls errors and dhcp/tcp metrics
    func GetRPCStats() RPCStats {
    	s := RPCStats{
    		Errs:     atomic.LoadUint64(&globalStats.errs),
    Registered: Sun Nov 03 19:28:11 UTC 2024
    - Last Modified: Tue Aug 13 18:21:34 UTC 2024
    - 2.6K bytes
    - Viewed (0)
  5. docs/de/docs/deployment/https.md

    /// tip | "Tipp"
    
    Beachten Sie, dass die Verschlüsselung der Kommunikation auf der **TCP-Ebene** und nicht auf der HTTP-Ebene erfolgt.
    
    ///
    
    ### HTTPS-Request
    
    Da Client und Server (sprich, der Browser und der TLS-Terminierungsproxy) nun über eine **verschlüsselte TCP-Verbindung** verfügen, können sie die **HTTP-Kommunikation** starten.
    
    Registered: Sun Nov 03 07:19:11 UTC 2024
    - Last Modified: Tue Aug 06 04:48:30 UTC 2024
    - 13.6K bytes
    - Viewed (0)
  6. .github/workflows/tests.yml

          with:
            path: ~/go/pkg/mod
            key: ${{ runner.os }}-go-${{ matrix.go }}-${{ hashFiles('tests/go.mod') }}
    
        - name: Tests
          run: GITHUB_ACTION=true GORM_DIALECT=mysql GORM_DSN="gorm:gorm@tcp(localhost:9910)/gorm?charset=utf8&parseTime=True" ./tests/tests_all.sh
    
      mariadb:
        strategy:
          matrix:
            dbversion: [ 'mariadb:latest' ]
            go: ['1.22', '1.21', '1.20']
    Registered: Sun Nov 03 09:35:10 UTC 2024
    - Last Modified: Mon Sep 30 03:21:19 UTC 2024
    - 6.6K bytes
    - Viewed (0)
  7. docs/ja/docs/deployment/https.md

    次に証明書を使用して、クライアントとTLS Termination Proxy は、 **TCP通信**の残りを**どのように暗号化するかを決定**します。これで**TLSハンドシェイク**の部分が完了します。
    
    この後、クライアントとサーバーは**暗号化されたTCP接続**を持ちます。そして、その接続を使って実際の**HTTP通信**を開始することができます。
    
    これが**HTTPS**であり、純粋な(暗号化されていない)TCP接続ではなく、**セキュアなTLS接続**の中に**HTTP**があるだけです。
    
    /// tip
    
    通信の暗号化は、HTTPレベルではなく、**TCPレベル**で行われることに注意してください。
    
    ///
    
    ### HTTPS リクエスト
    
    Registered: Sun Nov 03 07:19:11 UTC 2024
    - Last Modified: Tue Aug 06 04:48:30 UTC 2024
    - 15.4K bytes
    - Viewed (0)
  8. docs/zh/docs/deployment/https.md

    然后,通过使用证书,客户端和 TLS 终止代理 **决定如何加密** **TCP 通信** 的其余部分。 这就完成了 **TLS 握手** 部分。
    
    此后,客户端和服务器就拥有了**加密的 TCP 连接**,这就是 TLS 提供的功能。 然后他们可以使用该连接来启动实际的 **HTTP 通信**。
    
    这就是 **HTTPS**,它只是 **安全 TLS 连接** 内的普通 **HTTP**,而不是纯粹的(未加密的)TCP 连接。
    
    /// tip
    
    请注意,通信加密发生在 **TCP 层**,而不是 HTTP 层。
    
    ///
    
    ### HTTPS 请求
    
    现在客户端和服务器(特别是浏览器和 TLS 终止代理)具有 **加密的 TCP 连接**,它们可以开始 **HTTP 通信**。
    
    Registered: Sun Nov 03 07:19:11 UTC 2024
    - Last Modified: Mon Aug 12 21:47:53 UTC 2024
    - 10.7K bytes
    - Viewed (0)
  9. tests/tests_test.go

    )
    
    var DB *gorm.DB
    var (
    	mysqlDSN     = "gorm:gorm@tcp(localhost:9910)/gorm?charset=utf8&parseTime=True&loc=Local"
    	postgresDSN  = "user=gorm password=gorm dbname=gorm host=localhost port=9920 sslmode=disable TimeZone=Asia/Shanghai"
    	sqlserverDSN = "sqlserver://sa:LoremIpsum86@localhost:9930?database=master"
    	tidbDSN      = "root:@tcp(localhost:9940)/test?charset=utf8&parseTime=True&loc=Local"
    )
    
    func init() {
    Registered: Sun Nov 03 09:35:10 UTC 2024
    - Last Modified: Mon Sep 30 03:21:19 UTC 2024
    - 3.3K bytes
    - Viewed (0)
  10. cmd/metrics-v3-system-network.go

    		"Total number of failed internode calls")
    	internodeDialedErrorsTotalMD = NewCounterMD(internodeDialErrorsTotal,
    		"Total number of internode TCP dial timeouts and errors")
    	internodeDialAvgTimeNanosMD = NewGaugeMD(internodeDialAvgTimeNanos,
    		"Average dial time of internode TCP calls in nanoseconds")
    	internodeSentBytesTotalMD = NewCounterMD(internodeSentBytesTotal,
    		"Total number of bytes sent to other peer nodes")
    Registered: Sun Nov 03 19:28:11 UTC 2024
    - Last Modified: Sun Mar 10 09:15:15 UTC 2024
    - 2.4K bytes
    - Viewed (0)
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