mirror of
https://gitlab.kit.edu/uskyk/typicalc.git
synced 2024-11-08 18:30:42 +00:00
Step-Paket implementiert, StepVisitor-Methoden angepasst
This commit is contained in:
parent
75d686d8af
commit
36c9f092c7
33
package.json
33
package.json
@ -36,7 +36,20 @@
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"lit-element": "2.3.1",
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"@vaadin/form": "./target/flow-frontend/form",
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"@vaadin/vaadin-avatar": "1.0.3",
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"open": "^7.2.1"
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"open": "^7.2.1",
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"@vaadin/vaadin-crud": "1.3.0",
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"@vaadin/vaadin-cookie-consent": "1.2.0",
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"@vaadin/vaadin-upload": "4.4.1",
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"@vaadin/vaadin-board": "2.2.0",
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"@vaadin/vaadin-date-time-picker": "1.4.0",
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"@vaadin/vaadin-login": "1.2.0",
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"@vaadin/vaadin-accordion": "1.2.0",
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"@vaadin/vaadin-checkbox": "2.5.0",
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"@vaadin/vaadin-time-picker": "2.4.0",
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"@vaadin/vaadin-context-menu": "4.5.0",
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"@vaadin/vaadin-tabs": "3.2.0",
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"@vaadin/vaadin-radio-button": "1.5.1",
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"@vaadin/vaadin-rich-text-editor": "1.3.0"
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},
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"devDependencies": {
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"webpack": "4.42.0",
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@ -96,7 +109,21 @@
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"@vaadin/vaadin-custom-field": "1.3.0",
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"lit-element": "2.3.1",
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"@vaadin/vaadin-avatar": "1.0.3",
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"open": "^7.2.1"
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"open": "^7.2.1",
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"@vaadin/vaadin-crud": "1.3.0",
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"@vaadin/vaadin-cookie-consent": "1.2.0",
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"@vaadin/vaadin-upload": "4.4.1",
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"@vaadin/vaadin-board": "2.2.0",
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"@vaadin/vaadin-charts": "7.0.0",
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"@vaadin/vaadin-date-time-picker": "1.4.0",
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"@vaadin/vaadin-login": "1.2.0",
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"@vaadin/vaadin-date-picker": "4.4.1",
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"@vaadin/vaadin-accordion": "1.2.0",
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"@vaadin/vaadin-checkbox": "2.5.0",
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"@vaadin/vaadin-time-picker": "2.4.0",
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"@vaadin/vaadin-tabs": "3.2.0",
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"@vaadin/vaadin-radio-button": "1.5.1",
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"@vaadin/vaadin-rich-text-editor": "1.3.0"
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},
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"devDependencies": {
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"webpack-babel-multi-target-plugin": "2.3.3",
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@ -122,6 +149,6 @@
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"lit-css-loader": "0.0.4",
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"extract-loader": "5.1.0"
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},
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"hash": "b905e6c0ab4b1f42dcee18553457275cfa5c59c2404c0d9d2acc51cdb43de40b"
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"hash": "176a855b9845a8bd6e1b6138940c86e0431291e79479361d27a18a7b50bd4678"
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}
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}
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@ -1,4 +1,29 @@
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package edu.kit.typicalc.model.step;
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public class AbsStepDefault {
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import edu.kit.typicalc.model.Conclusion;
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import edu.kit.typicalc.model.Constraint;
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/**
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* Models one step of the inference tree where the abstraction rule
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* is applied and no let rule is applied in the entire tree.
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*/
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public class AbsStepDefault extends AbsStep {
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/**
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* Initializes a new AbsStepDefault with the given values.
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* @param premise the premise of this step
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* @param conclusion the conclusion of this step
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* @param constraint the constraint added in this step
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*/
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public AbsStepDefault(InferenceStep premise, Conclusion conclusion, Constraint constraint) {
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super(premise, conclusion, constraint);
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}
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/**
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* Accepts a visitor.
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* @param stepVisitor – the visitor that wants to visit this object
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*/
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@Override
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public void accept(StepVisitor stepVisitor) {
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stepVisitor.visit(this);
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}
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}
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@ -1,4 +1,29 @@
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package edu.kit.typicalc.model.step;
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public class AbsStepWithLet {
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import edu.kit.typicalc.model.Conclusion;
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import edu.kit.typicalc.model.Constraint;
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/**
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* Models one step of the inference tree where the abstraction rule is applied and at least
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* one let rule is applied in the entire tree.
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*/
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public class AbsStepWithLet extends AbsStep {
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/**
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*Initializes a new AbsStepWithLet with the given values.
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* @param premise the premise of this step
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* @param conclusion the conclusion of this step
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* @param constraint constraint that can be derived from this step
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*/
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public AbsStepWithLet(InferenceStep premise, Conclusion conclusion, Constraint constraint) {
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super(premise, conclusion, constraint);
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}
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/**
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* Accepts a visitor.
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* @param stepVisitor the visitor that wants to visit this object
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*/
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@Override
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public void accept(StepVisitor stepVisitor) {
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stepVisitor.visit(this);
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}
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}
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@ -1,4 +1,31 @@
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package edu.kit.typicalc.model.step;
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public class AppStepDefault {
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import edu.kit.typicalc.model.Conclusion;
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import edu.kit.typicalc.model.Constraint;
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/**
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* Models one step of the inference tree where the abstraction rule is applied and no let rule
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* is applied in the entire tree.
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*/
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public class AppStepDefault extends AppStep {
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/**
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*Initializes a new AbsStepWithLet with the given values.
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* @param premise1 the first premise of this step
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* @param premise2 the second premise of this step
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* @param conclusion the conclusion of this step
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* @param constraint constraint that can be derived from this step
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*/
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public AppStepDefault(InferenceStep premise1, InferenceStep premise2,
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Conclusion conclusion, Constraint constraint) {
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super(premise1, premise2, conclusion, constraint);
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}
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/**
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* Accepts a visitor.
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* @param stepVisitor – the visitor that wants to visit this object
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*/
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@Override
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public void accept(StepVisitor stepVisitor) {
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stepVisitor.visit(this);
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}
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}
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@ -1,4 +1,29 @@
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package edu.kit.typicalc.model.step;
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public class ConstStepDefault {
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import edu.kit.typicalc.model.Conclusion;
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import edu.kit.typicalc.model.Constraint;
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/**
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* Models one step of the inference tree where the constant rule is applied. As the constant
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* rule is the same regardless of whether the tree contains a let step, this is the only subclass
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* of ConstStep.
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*/
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public class ConstStepDefault extends ConstStep {
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/**
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* Initializes a new ConstStep with the given values.
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* @param conclusion the conclusion of this step
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* @param constraint the constraint added in this step
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*/
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public ConstStepDefault(Conclusion conclusion, Constraint constraint) {
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super(conclusion, constraint);
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}
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/**
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* Accepts a visitor.
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* @param stepVisitor the visitor that wants to visit this object
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*/
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@Override
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public void accept(StepVisitor stepVisitor) {
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stepVisitor.visit(this);
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}
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}
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@ -1,18 +1,49 @@
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package edu.kit.typicalc.model.step;
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import edu.kit.typicalc.model.Conclusion;
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import edu.kit.typicalc.model.Constraint;
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/**
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* Models one step of the inference tree. Depending on the inference rule that is applied in
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* a step, different subclasses of InferenceStep should be used. A step always contains the
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* Constraint that is added to the set of constraints of the type inference algorithm because
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* of this step and a Conclusion. The subclasses vary in the premise(s) they contain.
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* Models one step of the inference tree.
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* Depending on the inference rule that is applied in a step,
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* different subclasses of InferenceStep should be used.
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* A step always contains the Constraint that is added
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* to the set of constraints of the type inference algorithm because
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* of this step and a Conclusion.
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* The subclasses vary in the premise(s) they contain.
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*/
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public abstract class InferenceStep {
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// todo
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private Conclusion conclusion;
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private Constraint constraint;
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/**
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* Initializes a new InferenceStep with the given values.
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* @param conclusion the conclusion of this step
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* @param constraint the constraint added in this step
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*/
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protected InferenceStep(Conclusion conclusion, Constraint constraint) {
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this.conclusion = conclusion;
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this.constraint = constraint;
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}
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/**
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* Getter for the Conclusion of this step.
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* @return conclusion the conclusion of this step
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*/
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public Conclusion getConclusion() {
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return conclusion;
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}
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/**
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* Getter for the Constraint added in this step.
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* @return conclusion the constraint added in this step
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*/
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public Constraint getConstraint() {
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return constraint;
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}
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/**
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* Accepts a visitor.
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* @param stepVisitor the visitor that wants to visit this object
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*/
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public abstract void accept(StepVisitor stepVisitor);
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}
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package edu.kit.typicalc.model.step;
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public class LetStepDefault {
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import edu.kit.typicalc.model.Conclusion;
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import edu.kit.typicalc.model.Constraint;
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import edu.kit.typicalc.model.TypeInfererLet;
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/**
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* Models one step of the inference tree where the let rule is applied.
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*/
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public class LetStepDefault extends LetStep {
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/**
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* Initializes a new LetStep with the given values.
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* @param conclusion the conclusion of this step
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* @param constraint the constraint added in this step
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* @param premise the right premise of this step
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* @param typeInferer the typeInferer that performs the Type Inference for the premise
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* that needs its own type Inference.
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*/
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public LetStepDefault(Conclusion conclusion, Constraint constraint, InferenceStep premise,
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TypeInfererLet typeInferer) {
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super(conclusion, constraint, premise, typeInferer);
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}
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/**
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* Accepts a visitor.
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* @param stepVisitor the visitor that wants to visit this object
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*/
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@Override
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public void accept(StepVisitor stepVisitor) {
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stepVisitor.visit(this);
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}
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}
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@ -9,43 +9,43 @@ public interface StepVisitor {
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* Visits an AbsStepDefault.
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* @param absD the AbsStepDefault to visit
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*/
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void visitAbsStepDefault(AbsStepDefault absD);
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void visit(AbsStepDefault absD);
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/**
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* Visits an AbsStepWithLet.
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* @param absL the AbsStepWithLet to visit
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*/
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void visitAbsStepWithLet(AbsStepWithLet absL);
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void visit(AbsStepWithLet absL);
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/**
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* Visits an AppStepDefault.
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* @param appD the AppStepDefault to visit
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*/
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void visitAppStepDefault(AppStepDefault appD);
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void visit(AppStepDefault appD);
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/**
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* ConstStepDefault.
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* @param constD the ConstStepDefault to visit
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*/
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void visitConstStepDefault(ConstStepDefault constD);
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void visit(ConstStepDefault constD);
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/**
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* Visits a VarStepDefault.
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* @param varD the VarStepDefault to visit
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*/
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void visitVarStepDefault(VarStepDefault varD);
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void visit(VarStepDefault varD);
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/**
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* Visits a VarStepWithLet.
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* @param varL the VarStepWithLet to visit
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*/
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void visitVarStepWithLet(VarStepWithLet varL);
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void visit(VarStepWithLet varL);
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/**
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* Visits a LetStepDefault.
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* @param letD the LetStepDefault to visit
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*/
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void visitLetStepDefault(LetStepDefault letD);
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void visit(LetStepDefault letD);
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package edu.kit.typicalc.model.step;
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public class VarStepDefault {
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import edu.kit.typicalc.model.Conclusion;
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import edu.kit.typicalc.model.Constraint;
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import edu.kit.typicalc.model.type.TypeAbstraction;
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public class VarStepDefault extends VarStep {
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/**
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* Initializes a new VarStep with the given values.
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* @param conclusion the conclusion of this step
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* @param constraint the constraint added in this step
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* @param typeAbstractionInPremise the type abstraction in the premise of this step
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*/
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public VarStepDefault(Conclusion conclusion, Constraint constraint, TypeAbstraction typeAbstractionInPremise) {
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super(conclusion, constraint, typeAbstractionInPremise);
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}
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/**
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* Accepts a visitor.
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* @param stepVisitor the visitor that wants to visit this object
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*/
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@Override
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public void accept(StepVisitor stepVisitor) {
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stepVisitor.visit(this);
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}
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}
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package edu.kit.typicalc.model.step;
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public class VarStepWithLet {
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import edu.kit.typicalc.model.Conclusion;
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import edu.kit.typicalc.model.Constraint;
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import edu.kit.typicalc.model.type.TypeAbstraction;
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public class VarStepWithLet extends VarStep {
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/**
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* Initializes a new VarStep with the given values.
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* @param conclusion the conclusion of this step
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* @param constraint the constraint added in this step
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* @param typeAbstractionInPremise the type abstraction in the premise of this step
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*/
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public VarStepWithLet(Conclusion conclusion, Constraint constraint, TypeAbstraction typeAbstractionInPremise) {
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super(conclusion, constraint, typeAbstractionInPremise);
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}
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/**
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* Accepts a visitor.
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* @param stepVisitor the visitor that wants to visit this object
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*/
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@Override
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public void accept(StepVisitor stepVisitor) {
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stepVisitor.visit(this);
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}
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}
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@ -90,44 +90,44 @@ public class LatexCreator implements StepVisitor, TermVisitor, TypeVisitor {
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}
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@Override
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public void visitAbsStepDefault(AbsStepDefault absD) {
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public void visit(AbsStepDefault absD) {
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generateConclusion(absD, LABEL_ABS, UIC);
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}
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@Override
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public void visitAbsStepWithLet(AbsStepWithLet absL) {
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public void visit(AbsStepWithLet absL) {
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generateConclusion(absL, LABEL_ABS, UIC);
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}
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@Override
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public void visitAppStepDefault(AppStepDefault appD) {
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public void visit(AppStepDefault appD) {
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generateConclusion(appD, LABEL_APP, UIC);
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}
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@Override
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public void visitConstStepDefault(ConstStepDefault constD) {
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public void visit(ConstStepDefault constD) {
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generateConclusion(constD, LABEL_CONST, UIC);
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}
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@Override
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public void visitVarStepDefault(VarStepDefault varD) {
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public void visit(VarStepDefault varD) {
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generateConclusion(varD, LABEL_VAR, UIC);
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}
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@Override
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public void visitVarStepWithLet(VarStepWithLet varL) {
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public void visit(VarStepWithLet varL) {
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generateConclusion(varL, LABEL_VAR, UIC);
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}
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@Override
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public void visitLetStepDefault(LetStepDefault letD) {
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public void visit(LetStepDefault letD) {
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generateConclusion(letD, LABEL_LET, UIC);
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}
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