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package com.sun.xml.internal.ws.assembler;

import com.sun.istack.internal.NotNull;
import com.sun.istack.internal.Nullable;
import com.sun.xml.internal.ws.api.EndpointAddress;
import com.sun.xml.internal.ws.api.WSBinding;
import com.sun.xml.internal.ws.api.WSService;
import com.sun.xml.internal.ws.api.client.WSPortInfo;
import com.sun.xml.internal.ws.api.model.SEIModel;
import com.sun.xml.internal.ws.api.model.wsdl.WSDLPort;
import com.sun.xml.internal.ws.api.pipe.ClientTubeAssemblerContext;
import com.sun.xml.internal.ws.api.pipe.Codec;
import com.sun.xml.internal.ws.api.server.Container;
import com.sun.xml.internal.ws.assembler.dev.ClientTubelineAssemblyContext;
import com.sun.xml.internal.ws.policy.PolicyMap;

The context is a wrapper around the existing JAX-WS ClientTubeAssemblerContext with additional features
Author:Marek Potociar (marek.potociar at sun.com)
/** * The context is a wrapper around the existing JAX-WS {@link ClientTubeAssemblerContext} with additional features * * @author Marek Potociar (marek.potociar at sun.com) */
class DefaultClientTubelineAssemblyContext extends TubelineAssemblyContextImpl implements ClientTubelineAssemblyContext { private final @NotNull ClientTubeAssemblerContext wrappedContext; private final PolicyMap policyMap; private final WSPortInfo portInfo; // TODO: is this really needed? private final WSDLPort wsdlPort; // TODO: replace the PipeConfiguration public DefaultClientTubelineAssemblyContext(@NotNull ClientTubeAssemblerContext context) { this.wrappedContext = context; this.wsdlPort = context.getWsdlModel(); this.portInfo = context.getPortInfo(); this.policyMap = context.getPortInfo().getPolicyMap(); } public PolicyMap getPolicyMap() { return policyMap; } public boolean isPolicyAvailable() { return policyMap != null && !policyMap.isEmpty(); }
The created pipeline will be used to serve this port. Null if the service isn't associated with any port definition in WSDL, and otherwise non-null. Replaces ClientTubeAssemblerContext.getWsdlModel()
/** * The created pipeline will be used to serve this port. * Null if the service isn't associated with any port definition in WSDL, * and otherwise non-null. * * Replaces {@link com.sun.xml.internal.ws.api.pipe.ClientTubeAssemblerContext#getWsdlModel()} */
public WSDLPort getWsdlPort() { return wsdlPort; } public WSPortInfo getPortInfo() { return portInfo; }
The endpoint address. Always non-null. This parameter is taken separately from WSDLPort (even though there's WSDLPort.getAddress()) because sometimes WSDL is not available.
/** * The endpoint address. Always non-null. This parameter is taken separately * from {@link com.sun.xml.internal.ws.api.model.wsdl.WSDLPort} (even though there's {@link com.sun.xml.internal.ws.api.model.wsdl.WSDLPort#getAddress()}) * because sometimes WSDL is not available. */
public @NotNull EndpointAddress getAddress() { return wrappedContext.getAddress(); }
The pipeline is created for this WSService. Always non-null. (To be precise, the newly created pipeline is owned by a proxy or a dispatch created from this WSService.)
/** * The pipeline is created for this {@link com.sun.xml.internal.ws.api.WSService}. * Always non-null. (To be precise, the newly created pipeline * is owned by a proxy or a dispatch created from this {@link com.sun.xml.internal.ws.api.WSService}.) */
public @NotNull WSService getService() { return wrappedContext.getService(); }
The binding of the new pipeline to be created.
/** * The binding of the new pipeline to be created. */
public @NotNull WSBinding getBinding() { return wrappedContext.getBinding(); }
The created pipeline will use seiModel to get java concepts for the endpoint
Returns:Null if the service doesn't have SEI model e.g. Dispatch, and otherwise non-null.
/** * The created pipeline will use seiModel to get java concepts for the endpoint * * @return Null if the service doesn't have SEI model e.g. Dispatch, * and otherwise non-null. */
public @Nullable SEIModel getSEIModel() { return wrappedContext.getSEIModel(); }
Returns the Container in which the client is running
Returns:Container in which client is running
/** * Returns the Container in which the client is running * * @return Container in which client is running */
public Container getContainer() { return wrappedContext.getContainer(); }
Gets the Codec that is set by setCodec or the default codec based on the binding.
Returns:codec to be used for web service requests
/** * Gets the {@link Codec} that is set by {@link #setCodec} or the default codec * based on the binding. * * @return codec to be used for web service requests */
public @NotNull Codec getCodec() { return wrappedContext.getCodec(); }
Interception point to change Codec during Tubeline assembly. The new codec will be used by jax-ws client runtime for encoding/decoding web service request/response messages. The new codec should be used by the transport tubes.

the codec should correctly implement Codec.copy since it is used while serving requests concurrently.

Params:
  • codec – codec to be used for web service requests
/** * Interception point to change {@link Codec} during {@link com.sun.xml.internal.ws.api.pipe.Tube}line assembly. The * new codec will be used by jax-ws client runtime for encoding/decoding web service * request/response messages. The new codec should be used by the transport tubes. * * <p> * the codec should correctly implement {@link Codec#copy} since it is used while * serving requests concurrently. * * @param codec codec to be used for web service requests */
public void setCodec(@NotNull Codec codec) { wrappedContext.setCodec(codec); } public ClientTubeAssemblerContext getWrappedContext() { return wrappedContext; } }