Container for the parameters to the DescribeLoadBalancers operation. Describes the load balancers for the specified Auto Scaling group.

Note that this operation describes only Classic load balancers. If you have Application load balancers, use DescribeLoadBalancerTargetGroups instead.

Inheritance: AmazonAutoScalingRequest
        /// <summary>
        /// Initiates the asynchronous execution of the DescribeLoadBalancers operation.
        /// </summary>
        /// 
        /// <param name="request">Container for the necessary parameters to execute the DescribeLoadBalancers operation.</param>
        /// <param name="cancellationToken">
        ///     A cancellation token that can be used by other objects or threads to receive notice of cancellation.
        /// </param>
        /// <returns>The task object representing the asynchronous operation.</returns>
        public Task<DescribeLoadBalancersResponse> DescribeLoadBalancersAsync(DescribeLoadBalancersRequest request, System.Threading.CancellationToken cancellationToken = default(CancellationToken))
        {
            var marshaller = new DescribeLoadBalancersRequestMarshaller();
            var unmarshaller = DescribeLoadBalancersResponseUnmarshaller.Instance;

            return InvokeAsync<DescribeLoadBalancersRequest,DescribeLoadBalancersResponse>(request, marshaller, 
                unmarshaller, cancellationToken);
        }
        internal DescribeLoadBalancersResponse DescribeLoadBalancers(DescribeLoadBalancersRequest request)
        {
            var marshaller = new DescribeLoadBalancersRequestMarshaller();
            var unmarshaller = DescribeLoadBalancersResponseUnmarshaller.Instance;

            return Invoke<DescribeLoadBalancersRequest,DescribeLoadBalancersResponse>(request, marshaller, unmarshaller);
        }
Exemplo n.º 3
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        /// <summary>
        /// Initiates the asynchronous execution of the DescribeLoadBalancers operation.
        /// </summary>
        /// 
        /// <param name="request">Container for the necessary parameters to execute the DescribeLoadBalancers operation on AmazonAutoScalingClient.</param>
        /// <param name="callback">An AsyncCallback delegate that is invoked when the operation completes.</param>
        /// <param name="state">A user-defined state object that is passed to the callback procedure. Retrieve this object from within the callback
        ///          procedure using the AsyncState property.</param>
        /// 
        /// <returns>An IAsyncResult that can be used to poll or wait for results, or both; this value is also needed when invoking EndDescribeLoadBalancers
        ///         operation.</returns>
        public IAsyncResult BeginDescribeLoadBalancers(DescribeLoadBalancersRequest request, AsyncCallback callback, object state)
        {
            var marshaller = new DescribeLoadBalancersRequestMarshaller();
            var unmarshaller = DescribeLoadBalancersResponseUnmarshaller.Instance;

            return BeginInvoke<DescribeLoadBalancersRequest>(request, marshaller, unmarshaller,
                callback, state);
        }
 private Amazon.AutoScaling.Model.DescribeLoadBalancersResponse CallAWSServiceOperation(IAmazonAutoScaling client, Amazon.AutoScaling.Model.DescribeLoadBalancersRequest request)
 {
     Utils.Common.WriteVerboseEndpointMessage(this, client.Config, "AWS Auto Scaling", "DescribeLoadBalancers");
     try
     {
         #if DESKTOP
         return(client.DescribeLoadBalancers(request));
         #elif CORECLR
         return(client.DescribeLoadBalancersAsync(request).GetAwaiter().GetResult());
         #else
                 #error "Unknown build edition"
         #endif
     }
     catch (AmazonServiceException exc)
     {
         var webException = exc.InnerException as System.Net.WebException;
         if (webException != null)
         {
             throw new Exception(Utils.Common.FormatNameResolutionFailureMessage(client.Config, webException.Message), webException);
         }
         throw;
     }
 }
        public object Execute(ExecutorContext context)
        {
            var cmdletContext      = context as CmdletContext;
            var useParameterSelect = this.Select.StartsWith("^") || this.PassThru.IsPresent;

            // create request and set iteration invariants
            var request = new Amazon.AutoScaling.Model.DescribeLoadBalancersRequest();

            if (cmdletContext.AutoScalingGroupName != null)
            {
                request.AutoScalingGroupName = cmdletContext.AutoScalingGroupName;
            }

            // Initialize loop variants and commence piping
            System.String _nextToken      = null;
            int?          _emitLimit      = null;
            int           _retrievedSoFar = 0;

            if (AutoIterationHelpers.HasValue(cmdletContext.NextToken))
            {
                _nextToken = cmdletContext.NextToken;
            }
            if (AutoIterationHelpers.HasValue(cmdletContext.MaxRecord))
            {
                _emitLimit = cmdletContext.MaxRecord;
            }
            var _userControllingPaging = this.NoAutoIteration.IsPresent || ParameterWasBound(nameof(this.NextToken));

            var client = Client ?? CreateClient(_CurrentCredentials, _RegionEndpoint);

            do
            {
                request.NextToken = _nextToken;
                if (_emitLimit.HasValue)
                {
                    request.MaxRecords = AutoIterationHelpers.ConvertEmitLimitToInt32(_emitLimit.Value);
                }

                CmdletOutput output;

                try
                {
                    var    response       = CallAWSServiceOperation(client, request);
                    object pipelineOutput = null;
                    if (!useParameterSelect)
                    {
                        pipelineOutput = cmdletContext.Select(response, this);
                    }
                    output = new CmdletOutput
                    {
                        PipelineOutput  = pipelineOutput,
                        ServiceResponse = response
                    };
                    int _receivedThisCall = response.LoadBalancers.Count;

                    _nextToken       = response.NextToken;
                    _retrievedSoFar += _receivedThisCall;
                    if (_emitLimit.HasValue)
                    {
                        _emitLimit -= _receivedThisCall;
                    }
                }
                catch (Exception e)
                {
                    if (_retrievedSoFar == 0 || !_emitLimit.HasValue)
                    {
                        output = new CmdletOutput {
                            ErrorResponse = e
                        };
                    }
                    else
                    {
                        break;
                    }
                }

                ProcessOutput(output);
            } while (!_userControllingPaging && AutoIterationHelpers.HasValue(_nextToken) && (!_emitLimit.HasValue || _emitLimit.Value >= 1));


            if (useParameterSelect)
            {
                WriteObject(cmdletContext.Select(null, this));
            }


            return(null);
        }
        public object Execute(ExecutorContext context)
        {
            var cmdletContext = context as CmdletContext;

            #pragma warning disable CS0618, CS0612 //A class member was marked with the Obsolete attribute
            var useParameterSelect = this.Select.StartsWith("^") || this.PassThru.IsPresent;
            #pragma warning restore CS0618, CS0612 //A class member was marked with the Obsolete attribute

            // create request and set iteration invariants
            var request = new Amazon.AutoScaling.Model.DescribeLoadBalancersRequest();

            if (cmdletContext.AutoScalingGroupName != null)
            {
                request.AutoScalingGroupName = cmdletContext.AutoScalingGroupName;
            }
            if (cmdletContext.MaxRecord != null)
            {
                request.MaxRecords = AutoIterationHelpers.ConvertEmitLimitToServiceTypeInt32(cmdletContext.MaxRecord.Value);
            }

            // Initialize loop variant and commence piping
            var _nextToken             = cmdletContext.NextToken;
            var _userControllingPaging = this.NoAutoIteration.IsPresent || ParameterWasBound(nameof(this.NextToken));

            var client = Client ?? CreateClient(_CurrentCredentials, _RegionEndpoint);
            do
            {
                request.NextToken = _nextToken;

                CmdletOutput output;

                try
                {
                    var response = CallAWSServiceOperation(client, request);

                    object pipelineOutput = null;
                    if (!useParameterSelect)
                    {
                        pipelineOutput = cmdletContext.Select(response, this);
                    }
                    output = new CmdletOutput
                    {
                        PipelineOutput  = pipelineOutput,
                        ServiceResponse = response
                    };

                    _nextToken = response.NextToken;
                }
                catch (Exception e)
                {
                    output = new CmdletOutput {
                        ErrorResponse = e
                    };
                }

                ProcessOutput(output);
            } while (!_userControllingPaging && AutoIterationHelpers.HasValue(_nextToken));

            if (useParameterSelect)
            {
                WriteObject(cmdletContext.Select(null, this));
            }


            return(null);
        }