SiLeBAT/FSK-Lab

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de.bund.bfr.knime.pmm.nodes/src/de/bund/bfr/knime/pmm/modelcatalogreader/ModelCatalogReaderNodeModel.java

Summary

Maintainability
F
4 days
Test Coverage

Method execute has a Cognitive Complexity of 95 (exceeds 5 allowed). Consider refactoring.
Open

    @Override
    protected BufferedDataTable[] execute(final BufferedDataTable[] inData, final ExecutionContext exec) throws Exception {

        ResultSet result;
        Bfrdb db;

Cognitive Complexity

Cognitive Complexity is a measure of how difficult a unit of code is to intuitively understand. Unlike Cyclomatic Complexity, which determines how difficult your code will be to test, Cognitive Complexity tells you how difficult your code will be to read and comprehend.

A method's cognitive complexity is based on a few simple rules:

  • Code is not considered more complex when it uses shorthand that the language provides for collapsing multiple statements into one
  • Code is considered more complex for each "break in the linear flow of the code"
  • Code is considered more complex when "flow breaking structures are nested"

Further reading

Method execute has 142 lines of code (exceeds 25 allowed). Consider refactoring.
Open

    @Override
    protected BufferedDataTable[] execute(final BufferedDataTable[] inData, final ExecutionContext exec) throws Exception {

        ResultSet result;
        Bfrdb db;

Avoid deeply nested control flow statements.
Open

                        if (!addWarningMsg.isEmpty()) this.setWarningMessage(this.getWarningMessage() + addWarningMsg);

Method loadValidatedSettingsFrom has a Cognitive Complexity of 8 (exceeds 5 allowed). Consider refactoring.
Open

    @Override
    protected void loadValidatedSettingsFrom(final NodeSettingsRO settings) throws InvalidSettingsException {
        /*
         * filename = settings.getString( PARAM_FILENAME ); login =
         * settings.getString( PARAM_LOGIN ); passwd = settings.getString(

Cognitive Complexity

Cognitive Complexity is a measure of how difficult a unit of code is to intuitively understand. Unlike Cyclomatic Complexity, which determines how difficult your code will be to test, Cognitive Complexity tells you how difficult your code will be to read and comprehend.

A method's cognitive complexity is based on a few simple rules:

  • Code is not considered more complex when it uses shorthand that the language provides for collapsing multiple statements into one
  • Code is considered more complex for each "break in the linear flow of the code"
  • Code is considered more complex when "flow breaking structures are nested"

Further reading

Refactor this method to reduce its Cognitive Complexity from 95 to the 15 allowed.
Open

    protected BufferedDataTable[] execute(final BufferedDataTable[] inData, final ExecutionContext exec) throws Exception {

Cognitive Complexity is a measure of how hard the control flow of a method is to understand. Methods with high Cognitive Complexity will be difficult to maintain.

See

Define a constant instead of duplicating this literal "Modellkatalog" 4 times.
Open

                Object visible = DBKernel.getValue(db.getConnection(), "Modellkatalog", "ID", ""+modelID, "visible");

Duplicated string literals make the process of refactoring error-prone, since you must be sure to update all occurrences.

On the other hand, constants can be referenced from many places, but only need to be updated in a single place.

Noncompliant Code Example

With the default threshold of 3:

public void run() {
  prepare("action1");                              // Noncompliant - "action1" is duplicated 3 times
  execute("action1");
  release("action1");
}

@SuppressWarning("all")                            // Compliant - annotations are excluded
private void method1() { /* ... */ }
@SuppressWarning("all")
private void method2() { /* ... */ }

public String method3(String a) {
  System.out.println("'" + a + "'");               // Compliant - literal "'" has less than 5 characters and is excluded
  return "";                                       // Compliant - literal "" has less than 5 characters and is excluded
}

Compliant Solution

private static final String ACTION_1 = "action1";  // Compliant

public void run() {
  prepare(ACTION_1);                               // Compliant
  execute(ACTION_1);
  release(ACTION_1);
}

Exceptions

To prevent generating some false-positives, literals having less than 5 characters are excluded.

Define a constant instead of duplicating this literal "Klasse" 4 times.
Open

                        Object cls = DBKernel.getValue(conn, "Modellkatalog", "ID", modelID + "", "Klasse");

Duplicated string literals make the process of refactoring error-prone, since you must be sure to update all occurrences.

On the other hand, constants can be referenced from many places, but only need to be updated in a single place.

Noncompliant Code Example

With the default threshold of 3:

public void run() {
  prepare("action1");                              // Noncompliant - "action1" is duplicated 3 times
  execute("action1");
  release("action1");
}

@SuppressWarning("all")                            // Compliant - annotations are excluded
private void method1() { /* ... */ }
@SuppressWarning("all")
private void method2() { /* ... */ }

public String method3(String a) {
  System.out.println("'" + a + "'");               // Compliant - literal "'" has less than 5 characters and is excluded
  return "";                                       // Compliant - literal "" has less than 5 characters and is excluded
}

Compliant Solution

private static final String ACTION_1 = "action1";  // Compliant

public void run() {
  prepare(ACTION_1);                               // Compliant
  execute(ACTION_1);
  release(ACTION_1);
}

Exceptions

To prevent generating some false-positives, literals having less than 5 characters are excluded.

Define a constant instead of duplicating this literal "IndepUnit" 4 times.
Open

                            result.getArray("IndepUnit"), result.getArray("IndepDescription"), true);

Duplicated string literals make the process of refactoring error-prone, since you must be sure to update all occurrences.

On the other hand, constants can be referenced from many places, but only need to be updated in a single place.

Noncompliant Code Example

With the default threshold of 3:

public void run() {
  prepare("action1");                              // Noncompliant - "action1" is duplicated 3 times
  execute("action1");
  release("action1");
}

@SuppressWarning("all")                            // Compliant - annotations are excluded
private void method1() { /* ... */ }
@SuppressWarning("all")
private void method2() { /* ... */ }

public String method3(String a) {
  System.out.println("'" + a + "'");               // Compliant - literal "'" has less than 5 characters and is excluded
  return "";                                       // Compliant - literal "" has less than 5 characters and is excluded
}

Compliant Solution

private static final String ACTION_1 = "action1";  // Compliant

public void run() {
  prepare(ACTION_1);                               // Compliant
  execute(ACTION_1);
  release(ACTION_1);
}

Exceptions

To prevent generating some false-positives, literals having less than 5 characters are excluded.

Define a constant instead of duplicating this literal "DepUnit" 4 times.
Open

                    DepXml dx = new DepXml(result.getString(Bfrdb.ATT_DEP), result.getString("DepCategory"), result.getString("DepUnit"));

Duplicated string literals make the process of refactoring error-prone, since you must be sure to update all occurrences.

On the other hand, constants can be referenced from many places, but only need to be updated in a single place.

Noncompliant Code Example

With the default threshold of 3:

public void run() {
  prepare("action1");                              // Noncompliant - "action1" is duplicated 3 times
  execute("action1");
  release("action1");
}

@SuppressWarning("all")                            // Compliant - annotations are excluded
private void method1() { /* ... */ }
@SuppressWarning("all")
private void method2() { /* ... */ }

public String method3(String a) {
  System.out.println("'" + a + "'");               // Compliant - literal "'" has less than 5 characters and is excluded
  return "";                                       // Compliant - literal "" has less than 5 characters and is excluded
}

Compliant Solution

private static final String ACTION_1 = "action1";  // Compliant

public void run() {
  prepare(ACTION_1);                               // Compliant
  execute(ACTION_1);
  release(ACTION_1);
}

Exceptions

To prevent generating some false-positives, literals having less than 5 characters are excluded.

Add a nested comment explaining why this method is empty, throw an UnsupportedOperationException or complete the implementation.
Open

    protected void reset() {

There are several reasons for a method not to have a method body:

  • It is an unintentional omission, and should be fixed to prevent an unexpected behavior in production.
  • It is not yet, or never will be, supported. In this case an UnsupportedOperationException should be thrown.
  • The method is an intentionally-blank override. In this case a nested comment should explain the reason for the blank override.

Noncompliant Code Example

public void doSomething() {
}

public void doSomethingElse() {
}

Compliant Solution

@Override
public void doSomething() {
  // Do nothing because of X and Y.
}

@Override
public void doSomethingElse() {
  throw new UnsupportedOperationException();
}

Exceptions

Default (no-argument) constructors are ignored when there are other constructors in the class, as are empty methods in abstract classes.

public abstract class Animal {
  void speak() {  // default implementation ignored
  }
}

Add a nested comment explaining why this method is empty, throw an UnsupportedOperationException or complete the implementation.
Open

    protected void saveInternals(final File internDir, final ExecutionMonitor exec) throws IOException, CanceledExecutionException {

There are several reasons for a method not to have a method body:

  • It is an unintentional omission, and should be fixed to prevent an unexpected behavior in production.
  • It is not yet, or never will be, supported. In this case an UnsupportedOperationException should be thrown.
  • The method is an intentionally-blank override. In this case a nested comment should explain the reason for the blank override.

Noncompliant Code Example

public void doSomething() {
}

public void doSomethingElse() {
}

Compliant Solution

@Override
public void doSomething() {
  // Do nothing because of X and Y.
}

@Override
public void doSomethingElse() {
  throw new UnsupportedOperationException();
}

Exceptions

Default (no-argument) constructors are ignored when there are other constructors in the class, as are empty methods in abstract classes.

public abstract class Animal {
  void speak() {  // default implementation ignored
  }
}

Add a nested comment explaining why this method is empty, throw an UnsupportedOperationException or complete the implementation.
Open

    protected void loadInternals(final File internDir, final ExecutionMonitor exec) throws IOException, CanceledExecutionException {

There are several reasons for a method not to have a method body:

  • It is an unintentional omission, and should be fixed to prevent an unexpected behavior in production.
  • It is not yet, or never will be, supported. In this case an UnsupportedOperationException should be thrown.
  • The method is an intentionally-blank override. In this case a nested comment should explain the reason for the blank override.

Noncompliant Code Example

public void doSomething() {
}

public void doSomethingElse() {
}

Compliant Solution

@Override
public void doSomething() {
  // Do nothing because of X and Y.
}

@Override
public void doSomethingElse() {
  throw new UnsupportedOperationException();
}

Exceptions

Default (no-argument) constructors are ignored when there are other constructors in the class, as are empty methods in abstract classes.

public abstract class Animal {
  void speak() {  // default implementation ignored
  }
}

Replace this call to "replaceAll()" by a call to the "replace()" method.
Open

                        formula = formula.replaceAll("~", "=").replaceAll("\\s", "");

The underlying implementation of String::replaceAll calls the java.util.regex.Pattern.compile() method each time it is called even if the first argument is not a regular expression. This has a significant performance cost and therefore should be used with care.

When String::replaceAll is used, the first argument should be a real regular expression. If it’s not the case, String::replace does exactly the same thing as String::replaceAll without the performance drawback of the regex.

This rule raises an issue for each String::replaceAll used with a String as first parameter which doesn’t contains special regex character or pattern.

Noncompliant Code Example

String init = "Bob is a Bird... Bob is a Plane... Bob is Superman!";
String changed = init.replaceAll("Bob is", "It's"); // Noncompliant
changed = changed.replaceAll("\\.\\.\\.", ";"); // Noncompliant

Compliant Solution

String init = "Bob is a Bird... Bob is a Plane... Bob is Superman!";
String changed = init.replace("Bob is", "It's");
changed = changed.replace("...", ";");

Or, with a regex:

String init = "Bob is a Bird... Bob is a Plane... Bob is Superman!";
String changed = init.replaceAll("\\w*\\sis", "It's");
changed = changed.replaceAll("\\.{3}", ";");

See

  • {rule:java:S4248} - Regex patterns should not be created needlessly

Replace this call to "replaceAll()" by a call to the "replace()" method.
Open

                        formula = formula.replaceAll("~", "=").replaceAll("\\s", "");

The underlying implementation of String::replaceAll calls the java.util.regex.Pattern.compile() method each time it is called even if the first argument is not a regular expression. This has a significant performance cost and therefore should be used with care.

When String::replaceAll is used, the first argument should be a real regular expression. If it’s not the case, String::replace does exactly the same thing as String::replaceAll without the performance drawback of the regex.

This rule raises an issue for each String::replaceAll used with a String as first parameter which doesn’t contains special regex character or pattern.

Noncompliant Code Example

String init = "Bob is a Bird... Bob is a Plane... Bob is Superman!";
String changed = init.replaceAll("Bob is", "It's"); // Noncompliant
changed = changed.replaceAll("\\.\\.\\.", ";"); // Noncompliant

Compliant Solution

String init = "Bob is a Bird... Bob is a Plane... Bob is Superman!";
String changed = init.replace("Bob is", "It's");
changed = changed.replace("...", ";");

Or, with a regex:

String init = "Bob is a Bird... Bob is a Plane... Bob is Superman!";
String changed = init.replaceAll("\\w*\\sis", "It's");
changed = changed.replaceAll("\\.{3}", ";");

See

  • {rule:java:S4248} - Regex patterns should not be created needlessly

Identical blocks of code found in 2 locations. Consider refactoring.
Open

                if (visible == null || (visible instanceof Boolean && (Boolean) visible)) {
                    takeIt = modelClass == null || modelClass.equals("All");
                    if (!takeIt) {
                        Object cls = DBKernel.getValue(conn, "Modellkatalog", "ID", modelID + "", "Klasse");
                        String mcls = DBKernel.myDBi.getHashMap("ModelType").get(cls);
de.bund.bfr.knime.pmm.nodes/src/de/bund/bfr/knime/pmm/modelcatalogreader/ModelCatalogReaderNodeModel.java on lines 138..146

Duplicated Code

Duplicated code can lead to software that is hard to understand and difficult to change. The Don't Repeat Yourself (DRY) principle states:

Every piece of knowledge must have a single, unambiguous, authoritative representation within a system.

When you violate DRY, bugs and maintenance problems are sure to follow. Duplicated code has a tendency to both continue to replicate and also to diverge (leaving bugs as two similar implementations differ in subtle ways).

Tuning

This issue has a mass of 120.

We set useful threshold defaults for the languages we support but you may want to adjust these settings based on your project guidelines.

The threshold configuration represents the minimum mass a code block must have to be analyzed for duplication. The lower the threshold, the more fine-grained the comparison.

If the engine is too easily reporting duplication, try raising the threshold. If you suspect that the engine isn't catching enough duplication, try lowering the threshold. The best setting tends to differ from language to language.

See codeclimate-duplication's documentation for more information about tuning the mass threshold in your .codeclimate.yml.

Refactorings

Further Reading

Identical blocks of code found in 2 locations. Consider refactoring.
Open

                if (visible == null || (visible instanceof Boolean && (Boolean) visible)) {
                    takeIt = modelClass == null || modelClass.equals("All");
                    if (!takeIt) {
                        Object cls = DBKernel.getValue(conn, "Modellkatalog", "ID", modelID + "", "Klasse");
                        String mcls = DBKernel.myDBi.getHashMap("ModelType").get(cls);
de.bund.bfr.knime.pmm.nodes/src/de/bund/bfr/knime/pmm/modelcatalogreader/ModelCatalogReaderNodeModel.java on lines 219..227

Duplicated Code

Duplicated code can lead to software that is hard to understand and difficult to change. The Don't Repeat Yourself (DRY) principle states:

Every piece of knowledge must have a single, unambiguous, authoritative representation within a system.

When you violate DRY, bugs and maintenance problems are sure to follow. Duplicated code has a tendency to both continue to replicate and also to diverge (leaving bugs as two similar implementations differ in subtle ways).

Tuning

This issue has a mass of 120.

We set useful threshold defaults for the languages we support but you may want to adjust these settings based on your project guidelines.

The threshold configuration represents the minimum mass a code block must have to be analyzed for duplication. The lower the threshold, the more fine-grained the comparison.

If the engine is too easily reporting duplication, try raising the threshold. If you suspect that the engine isn't catching enough duplication, try lowering the threshold. The best setting tends to differ from language to language.

See codeclimate-duplication's documentation for more information about tuning the mass threshold in your .codeclimate.yml.

Refactorings

Further Reading

Identical blocks of code found in 3 locations. Consider refactoring.
Open

        else if (settings.containsKey("modelList")) {
            String ids = settings.getString("modelList");
            if (ids != null && ids.length() > 0) {
                String[] token = ids.split(",");
                int[] idis = new int[token.length];
de.bund.bfr.knime.pmm.nodes/src/de/bund/bfr/knime/pmm/estimatedmodelreader/EstimatedModelReaderNodeModel.java on lines 722..734
de.bund.bfr.knime.pmm.nodes/src/de/bund/bfr/knime/pmm/estimatedmodelreader/EstimatedModelReaderNodeModel.java on lines 778..790

Duplicated Code

Duplicated code can lead to software that is hard to understand and difficult to change. The Don't Repeat Yourself (DRY) principle states:

Every piece of knowledge must have a single, unambiguous, authoritative representation within a system.

When you violate DRY, bugs and maintenance problems are sure to follow. Duplicated code has a tendency to both continue to replicate and also to diverge (leaving bugs as two similar implementations differ in subtle ways).

Tuning

This issue has a mass of 116.

We set useful threshold defaults for the languages we support but you may want to adjust these settings based on your project guidelines.

The threshold configuration represents the minimum mass a code block must have to be analyzed for duplication. The lower the threshold, the more fine-grained the comparison.

If the engine is too easily reporting duplication, try raising the threshold. If you suspect that the engine isn't catching enough duplication, try lowering the threshold. The best setting tends to differ from language to language.

See codeclimate-duplication's documentation for more information about tuning the mass threshold in your .codeclimate.yml.

Refactorings

Further Reading

Identical blocks of code found in 4 locations. Consider refactoring.
Open

                    tuple.setValue(Model1Schema.ATT_PARAMETER, DbIo.convertArrays2ParamXmlDoc(null, result.getArray(Bfrdb.ATT_PARAMNAME), null, null,
                            result.getArray("ParCategory"), result.getArray("ParUnit"), null, result.getArray(Bfrdb.ATT_MINVALUE), result.getArray(Bfrdb.ATT_MAXVALUE),
                            result.getArray("ParamDescription"), result.getArray(Bfrdb.ATT_PARAMTYPE), null, null, null, null));
de.bund.bfr.knime.pmm.bfrdbiface.lib/src/de/bund/bfr/knime/pmm/bfrdbiface/lib/Bfrdb.java on lines 307..309
de.bund.bfr.knime.pmm.bfrdbiface.lib/src/de/bund/bfr/knime/pmm/bfrdbiface/lib/Bfrdb.java on lines 362..364
de.bund.bfr.knime.pmm.nodes/src/de/bund/bfr/knime/pmm/modelcatalogreader/ModelCatalogReaderNodeModel.java on lines 265..267

Duplicated Code

Duplicated code can lead to software that is hard to understand and difficult to change. The Don't Repeat Yourself (DRY) principle states:

Every piece of knowledge must have a single, unambiguous, authoritative representation within a system.

When you violate DRY, bugs and maintenance problems are sure to follow. Duplicated code has a tendency to both continue to replicate and also to diverge (leaving bugs as two similar implementations differ in subtle ways).

Tuning

This issue has a mass of 80.

We set useful threshold defaults for the languages we support but you may want to adjust these settings based on your project guidelines.

The threshold configuration represents the minimum mass a code block must have to be analyzed for duplication. The lower the threshold, the more fine-grained the comparison.

If the engine is too easily reporting duplication, try raising the threshold. If you suspect that the engine isn't catching enough duplication, try lowering the threshold. The best setting tends to differ from language to language.

See codeclimate-duplication's documentation for more information about tuning the mass threshold in your .codeclimate.yml.

Refactorings

Further Reading

Identical blocks of code found in 4 locations. Consider refactoring.
Open

                    tuple.setValue(Model2Schema.ATT_PARAMETER, DbIo.convertArrays2ParamXmlDoc(null, result.getArray(Bfrdb.ATT_PARAMNAME), null, null,
                            result.getArray("ParCategory"), result.getArray("ParUnit"), null, result.getArray(Bfrdb.ATT_MINVALUE), result.getArray(Bfrdb.ATT_MAXVALUE),
                            result.getArray("ParamDescription"), result.getArray(Bfrdb.ATT_PARAMTYPE), null, null, null, null));
de.bund.bfr.knime.pmm.bfrdbiface.lib/src/de/bund/bfr/knime/pmm/bfrdbiface/lib/Bfrdb.java on lines 307..309
de.bund.bfr.knime.pmm.bfrdbiface.lib/src/de/bund/bfr/knime/pmm/bfrdbiface/lib/Bfrdb.java on lines 362..364
de.bund.bfr.knime.pmm.nodes/src/de/bund/bfr/knime/pmm/modelcatalogreader/ModelCatalogReaderNodeModel.java on lines 177..179

Duplicated Code

Duplicated code can lead to software that is hard to understand and difficult to change. The Don't Repeat Yourself (DRY) principle states:

Every piece of knowledge must have a single, unambiguous, authoritative representation within a system.

When you violate DRY, bugs and maintenance problems are sure to follow. Duplicated code has a tendency to both continue to replicate and also to diverge (leaving bugs as two similar implementations differ in subtle ways).

Tuning

This issue has a mass of 80.

We set useful threshold defaults for the languages we support but you may want to adjust these settings based on your project guidelines.

The threshold configuration represents the minimum mass a code block must have to be analyzed for duplication. The lower the threshold, the more fine-grained the comparison.

If the engine is too easily reporting duplication, try raising the threshold. If you suspect that the engine isn't catching enough duplication, try lowering the threshold. The best setting tends to differ from language to language.

See codeclimate-duplication's documentation for more information about tuning the mass threshold in your .codeclimate.yml.

Refactorings

Further Reading

Identical blocks of code found in 2 locations. Consider refactoring.
Open

                    if (!modelFilterEnabled || ModelReaderUi.passesFilter(modelList, tuple, level)) {
                        buf.addRowToTable(new DefaultRow(String.valueOf(i++), tuple));
                        if (!addWarningMsg.isEmpty()) this.setWarningMessage(this.getWarningMessage() + addWarningMsg);
                    }
de.bund.bfr.knime.pmm.nodes/src/de/bund/bfr/knime/pmm/modelcatalogreader/ModelCatalogReaderNodeModel.java on lines 201..204

Duplicated Code

Duplicated code can lead to software that is hard to understand and difficult to change. The Don't Repeat Yourself (DRY) principle states:

Every piece of knowledge must have a single, unambiguous, authoritative representation within a system.

When you violate DRY, bugs and maintenance problems are sure to follow. Duplicated code has a tendency to both continue to replicate and also to diverge (leaving bugs as two similar implementations differ in subtle ways).

Tuning

This issue has a mass of 60.

We set useful threshold defaults for the languages we support but you may want to adjust these settings based on your project guidelines.

The threshold configuration represents the minimum mass a code block must have to be analyzed for duplication. The lower the threshold, the more fine-grained the comparison.

If the engine is too easily reporting duplication, try raising the threshold. If you suspect that the engine isn't catching enough duplication, try lowering the threshold. The best setting tends to differ from language to language.

See codeclimate-duplication's documentation for more information about tuning the mass threshold in your .codeclimate.yml.

Refactorings

Further Reading

Identical blocks of code found in 2 locations. Consider refactoring.
Open

                    if (!modelFilterEnabled || ModelReaderUi.passesFilter(modelList, tuple, level)) {
                        buf.addRowToTable(new DefaultRow(String.valueOf(i++), tuple));
                        if (!addWarningMsg.isEmpty()) this.setWarningMessage(this.getWarningMessage() + addWarningMsg);
                    }
de.bund.bfr.knime.pmm.nodes/src/de/bund/bfr/knime/pmm/modelcatalogreader/ModelCatalogReaderNodeModel.java on lines 286..289

Duplicated Code

Duplicated code can lead to software that is hard to understand and difficult to change. The Don't Repeat Yourself (DRY) principle states:

Every piece of knowledge must have a single, unambiguous, authoritative representation within a system.

When you violate DRY, bugs and maintenance problems are sure to follow. Duplicated code has a tendency to both continue to replicate and also to diverge (leaving bugs as two similar implementations differ in subtle ways).

Tuning

This issue has a mass of 60.

We set useful threshold defaults for the languages we support but you may want to adjust these settings based on your project guidelines.

The threshold configuration represents the minimum mass a code block must have to be analyzed for duplication. The lower the threshold, the more fine-grained the comparison.

If the engine is too easily reporting duplication, try raising the threshold. If you suspect that the engine isn't catching enough duplication, try lowering the threshold. The best setting tends to differ from language to language.

See codeclimate-duplication's documentation for more information about tuning the mass threshold in your .codeclimate.yml.

Refactorings

Further Reading

Identical blocks of code found in 2 locations. Consider refactoring.
Open

                    if (dx.unit == null || dx.unit.isEmpty()) addWarningMsg += "\nUnit not defined for dependant variable '" + dx.name + "' in model with ID "
                            + cmx.id + "!";
de.bund.bfr.knime.pmm.nodes/src/de/bund/bfr/knime/pmm/modelcatalogreader/ModelCatalogReaderNodeModel.java on lines 253..254

Duplicated Code

Duplicated code can lead to software that is hard to understand and difficult to change. The Don't Repeat Yourself (DRY) principle states:

Every piece of knowledge must have a single, unambiguous, authoritative representation within a system.

When you violate DRY, bugs and maintenance problems are sure to follow. Duplicated code has a tendency to both continue to replicate and also to diverge (leaving bugs as two similar implementations differ in subtle ways).

Tuning

This issue has a mass of 46.

We set useful threshold defaults for the languages we support but you may want to adjust these settings based on your project guidelines.

The threshold configuration represents the minimum mass a code block must have to be analyzed for duplication. The lower the threshold, the more fine-grained the comparison.

If the engine is too easily reporting duplication, try raising the threshold. If you suspect that the engine isn't catching enough duplication, try lowering the threshold. The best setting tends to differ from language to language.

See codeclimate-duplication's documentation for more information about tuning the mass threshold in your .codeclimate.yml.

Refactorings

Further Reading

Identical blocks of code found in 2 locations. Consider refactoring.
Open

                    if (dx.unit == null || dx.unit.isEmpty()) addWarningMsg += "\nUnit not defined for dependant variable '" + dx.name + "' in model with ID "
                            + cmx.id + "!";
de.bund.bfr.knime.pmm.nodes/src/de/bund/bfr/knime/pmm/modelcatalogreader/ModelCatalogReaderNodeModel.java on lines 169..170

Duplicated Code

Duplicated code can lead to software that is hard to understand and difficult to change. The Don't Repeat Yourself (DRY) principle states:

Every piece of knowledge must have a single, unambiguous, authoritative representation within a system.

When you violate DRY, bugs and maintenance problems are sure to follow. Duplicated code has a tendency to both continue to replicate and also to diverge (leaving bugs as two similar implementations differ in subtle ways).

Tuning

This issue has a mass of 46.

We set useful threshold defaults for the languages we support but you may want to adjust these settings based on your project guidelines.

The threshold configuration represents the minimum mass a code block must have to be analyzed for duplication. The lower the threshold, the more fine-grained the comparison.

If the engine is too easily reporting duplication, try raising the threshold. If you suspect that the engine isn't catching enough duplication, try lowering the threshold. The best setting tends to differ from language to language.

See codeclimate-duplication's documentation for more information about tuning the mass threshold in your .codeclimate.yml.

Refactorings

Further Reading

Identical blocks of code found in 2 locations. Consider refactoring.
Open

                    PmmXmlDoc ixml = DbIo.convertArrays2IndepXmlDoc(null, result.getArray(Bfrdb.ATT_INDEP), null, null, result.getArray("IndepCategory"),
                            result.getArray("IndepUnit"), result.getArray("IndepDescription"), true);
de.bund.bfr.knime.pmm.nodes/src/de/bund/bfr/knime/pmm/modelcatalogreader/ModelCatalogReaderNodeModel.java on lines 260..261

Duplicated Code

Duplicated code can lead to software that is hard to understand and difficult to change. The Don't Repeat Yourself (DRY) principle states:

Every piece of knowledge must have a single, unambiguous, authoritative representation within a system.

When you violate DRY, bugs and maintenance problems are sure to follow. Duplicated code has a tendency to both continue to replicate and also to diverge (leaving bugs as two similar implementations differ in subtle ways).

Tuning

This issue has a mass of 44.

We set useful threshold defaults for the languages we support but you may want to adjust these settings based on your project guidelines.

The threshold configuration represents the minimum mass a code block must have to be analyzed for duplication. The lower the threshold, the more fine-grained the comparison.

If the engine is too easily reporting duplication, try raising the threshold. If you suspect that the engine isn't catching enough duplication, try lowering the threshold. The best setting tends to differ from language to language.

See codeclimate-duplication's documentation for more information about tuning the mass threshold in your .codeclimate.yml.

Refactorings

Further Reading

Identical blocks of code found in 2 locations. Consider refactoring.
Open

                    PmmXmlDoc ixml = DbIo.convertArrays2IndepXmlDoc(null, result.getArray(Bfrdb.ATT_INDEP), null, null, result.getArray("IndepCategory"),
                            result.getArray("IndepUnit"), result.getArray("IndepDescription"), false);
de.bund.bfr.knime.pmm.nodes/src/de/bund/bfr/knime/pmm/modelcatalogreader/ModelCatalogReaderNodeModel.java on lines 172..173

Duplicated Code

Duplicated code can lead to software that is hard to understand and difficult to change. The Don't Repeat Yourself (DRY) principle states:

Every piece of knowledge must have a single, unambiguous, authoritative representation within a system.

When you violate DRY, bugs and maintenance problems are sure to follow. Duplicated code has a tendency to both continue to replicate and also to diverge (leaving bugs as two similar implementations differ in subtle ways).

Tuning

This issue has a mass of 44.

We set useful threshold defaults for the languages we support but you may want to adjust these settings based on your project guidelines.

The threshold configuration represents the minimum mass a code block must have to be analyzed for duplication. The lower the threshold, the more fine-grained the comparison.

If the engine is too easily reporting duplication, try raising the threshold. If you suspect that the engine isn't catching enough duplication, try lowering the threshold. The best setting tends to differ from language to language.

See codeclimate-duplication's documentation for more information about tuning the mass threshold in your .codeclimate.yml.

Refactorings

Further Reading

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