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/*
* NextGenPSD2 XS2A Framework
* # Summary The **NextGenPSD2** *Framework Version 1.3.4* offers a modern, open, harmonised and interoperable set of Application Programming Interfaces (APIs) as the safest and most efficient way to provide data securely. The NextGenPSD2 Framework reduces XS2A complexity and costs, addresses the problem of multiple competing standards in Europe and, aligned with the goals of the Euro Retail Payments Board, enables European banking customers to benefit from innovative products and services ('Banking as a Service') by granting TPPs safe and secure (authenticated and authorised) access to their bank accounts and financial data. The possible Approaches are: * Redirect SCA Approach * OAuth SCA Approach * Decoupled SCA Approach * Embedded SCA Approach without SCA method * Embedded SCA Approach with only one SCA method available * Embedded SCA Approach with Selection of a SCA method Not every message defined in this API definition is necessary for all approaches. Furthermore this API definition does not differ between methods which are mandatory, conditional, or optional Therefore for a particular implementation of a Berlin Group PSD2 compliant API it is only necessary to support a certain subset of the methods defined in this API definition. **Please have a look at the implementation guidelines if you are not sure which message has to be used for the approach you are going to use.** ## Some General Remarks Related to this version of the OpenAPI Specification: * **This API definition is based on the Implementation Guidelines of the Berlin Group PSD2 API.** It is not an replacement in any sense. The main specification is (at the moment) always the Implementation Guidelines of the Berlin Group PSD2 API. * **This API definition contains the REST-API for requests from the PISP to the ASPSP.** * **This API definition contains the messages for all different approaches defined in the Implementation Guidelines.** * According to the OpenAPI-Specification [https://github.com/OAI/OpenAPI-Specification/blob/master/versions/3.0.1.md] \"If in is \"header\" and the name field is \"Accept\", \"Content-Type\" or \"Authorization\", the parameter definition SHALL be ignored.\" The element \"Accept\" will not be defined in this file at any place. The elements \"Content-Type\" and \"Authorization\" are implicitly defined by the OpenApi tags \"content\" and \"security\". * There are several predefined types which might occur in payment initiation messages, but are not used in the standard JSON messages in the Implementation Guidelines. Therefore they are not used in the corresponding messages in this file either. We added them for the convenience of the user. If there is a payment product, which need these field, one can easily use the predefined types. But the ASPSP need not to accept them in general. * **We omit the definition of all standard HTTP header elements (mandatory/optional/conditional) except they are mention in the Implementation Guidelines.** Therefore the implementer might add the in his own realisation of a PSD2 comlient API in addition to the elements define in this file. ## General Remarks on Data Types The Berlin Group definition of UTF-8 strings in context of the PSD2 API have to support at least the following characters a b c d e f g h i j k l m n o p q r s t u v w x y z A B C D E F G H I J K L M N O P Q R S T U V W X Y Z 0 1 2 3 4 5 6 7 8 9 / - ? : ( ) . , ' + Space
*
* OpenAPI spec version: 1.3.4_2019-07-17v1
* Contact: [email protected]
*
* NOTE: This class is auto generated by the swagger code generator program.
* https://github.com/swagger-api/swagger-codegen.git
* Do not edit the class manually.
*/
package de.adorsys.multibanking.xs2a_adapter.model;
import java.util.Objects;
import java.util.Arrays;
import com.google.gson.TypeAdapter;
import com.google.gson.annotations.JsonAdapter;
import com.google.gson.annotations.SerializedName;
import com.google.gson.stream.JsonReader;
import com.google.gson.stream.JsonWriter;
import de.adorsys.multibanking.xs2a_adapter.model.ChallengeData;
import de.adorsys.multibanking.xs2a_adapter.model.ChosenScaMethod;
import de.adorsys.multibanking.xs2a_adapter.model.ConsentStatus;
import de.adorsys.multibanking.xs2a_adapter.model.LinksConsents;
import de.adorsys.multibanking.xs2a_adapter.model.ScaMethods;
import io.swagger.v3.oas.annotations.media.Schema;
import java.io.IOException;
/**
* Body of the JSON response for a successful conset request.
*/
@Schema(description = "Body of the JSON response for a successful conset request.")
@javax.annotation.Generated(value = "io.swagger.codegen.v3.generators.java.JavaClientCodegen", date = "2020-07-01T12:18:07.183Z[UTC]")
public class ConsentsResponse201 {
@SerializedName("consentStatus")
private ConsentStatus consentStatus = null;
@SerializedName("consentId")
private String consentId = null;
@SerializedName("scaMethods")
private ScaMethods scaMethods = null;
@SerializedName("chosenScaMethod")
private ChosenScaMethod chosenScaMethod = null;
@SerializedName("challengeData")
private ChallengeData challengeData = null;
@SerializedName("_links")
private LinksConsents _links = null;
@SerializedName("message")
private String message = null;
public ConsentsResponse201 consentStatus(ConsentStatus consentStatus) {
this.consentStatus = consentStatus;
return this;
}
/**
* Get consentStatus
* @return consentStatus
**/
@Schema(required = true, description = "")
public ConsentStatus getConsentStatus() {
return consentStatus;
}
public void setConsentStatus(ConsentStatus consentStatus) {
this.consentStatus = consentStatus;
}
public ConsentsResponse201 consentId(String consentId) {
this.consentId = consentId;
return this;
}
/**
* Get consentId
* @return consentId
**/
@Schema(required = true, description = "")
public String getConsentId() {
return consentId;
}
public void setConsentId(String consentId) {
this.consentId = consentId;
}
public ConsentsResponse201 scaMethods(ScaMethods scaMethods) {
this.scaMethods = scaMethods;
return this;
}
/**
* Get scaMethods
* @return scaMethods
**/
@Schema(description = "")
public ScaMethods getScaMethods() {
return scaMethods;
}
public void setScaMethods(ScaMethods scaMethods) {
this.scaMethods = scaMethods;
}
public ConsentsResponse201 chosenScaMethod(ChosenScaMethod chosenScaMethod) {
this.chosenScaMethod = chosenScaMethod;
return this;
}
/**
* Get chosenScaMethod
* @return chosenScaMethod
**/
@Schema(description = "")
public ChosenScaMethod getChosenScaMethod() {
return chosenScaMethod;
}
public void setChosenScaMethod(ChosenScaMethod chosenScaMethod) {
this.chosenScaMethod = chosenScaMethod;
}
public ConsentsResponse201 challengeData(ChallengeData challengeData) {
this.challengeData = challengeData;
return this;
}
/**
* Get challengeData
* @return challengeData
**/
@Schema(description = "")
public ChallengeData getChallengeData() {
return challengeData;
}
public void setChallengeData(ChallengeData challengeData) {
this.challengeData = challengeData;
}
public ConsentsResponse201 _links(LinksConsents _links) {
this._links = _links;
return this;
}
/**
* Get _links
* @return _links
**/
@Schema(required = true, description = "")
public LinksConsents getLinks() {
return _links;
}
public void setLinks(LinksConsents _links) {
this._links = _links;
}
public ConsentsResponse201 message(String message) {
this.message = message;
return this;
}
/**
* Text to be displayed to the PSU, e.g. in a Decoupled SCA Approach.
* @return message
**/
@Schema(description = "Text to be displayed to the PSU, e.g. in a Decoupled SCA Approach.")
public String getMessage() {
return message;
}
public void setMessage(String message) {
this.message = message;
}
@Override
public boolean equals(java.lang.Object o) {
if (this == o) {
return true;
}
if (o == null || getClass() != o.getClass()) {
return false;
}
ConsentsResponse201 consentsResponse201 = (ConsentsResponse201) o;
return Objects.equals(this.consentStatus, consentsResponse201.consentStatus) &&
Objects.equals(this.consentId, consentsResponse201.consentId) &&
Objects.equals(this.scaMethods, consentsResponse201.scaMethods) &&
Objects.equals(this.chosenScaMethod, consentsResponse201.chosenScaMethod) &&
Objects.equals(this.challengeData, consentsResponse201.challengeData) &&
Objects.equals(this._links, consentsResponse201._links) &&
Objects.equals(this.message, consentsResponse201.message);
}
@Override
public int hashCode() {
return Objects.hash(consentStatus, consentId, scaMethods, chosenScaMethod, challengeData, _links, message);
}
@Override
public String toString() {
StringBuilder sb = new StringBuilder();
sb.append("class ConsentsResponse201 {\n");
sb.append(" consentStatus: ").append(toIndentedString(consentStatus)).append("\n");
sb.append(" consentId: ").append(toIndentedString(consentId)).append("\n");
sb.append(" scaMethods: ").append(toIndentedString(scaMethods)).append("\n");
sb.append(" chosenScaMethod: ").append(toIndentedString(chosenScaMethod)).append("\n");
sb.append(" challengeData: ").append(toIndentedString(challengeData)).append("\n");
sb.append(" _links: ").append(toIndentedString(_links)).append("\n");
sb.append(" message: ").append(toIndentedString(message)).append("\n");
sb.append("}");
return sb.toString();
}
/**
* Convert the given object to string with each line indented by 4 spaces
* (except the first line).
*/
private String toIndentedString(java.lang.Object o) {
if (o == null) {
return "null";
}
return o.toString().replace("\n", "\n ");
}
}