Ceil: Unterschied zwischen den Versionen

Aus JACK Wiki
Zur Navigation springen Zur Suche springen
Keine Bearbeitungszusammenfassung
Zeile 23: Zeile 23:
====JUnit Tests====
====JUnit Tests====
<syntaxhighlight lang="java" class="mw-collapsible mw-collapsed">
<syntaxhighlight lang="java" class="mw-collapsible mw-collapsed">
@Test public void testAbs() {
@Test public void testAbs() {
  assertTrue(1 == getEvaluator().getNumberResult("abs(1)"));
  assertTrue(1 == getEvaluator().getNumberResult("abs(1)"));
  assertTrue(1 == getEvaluator().getNumberResult("abs('-1')"));
  assertTrue(1 == getEvaluator().getNumberResult("abs('-1')"));
  assertTrue(0.5 == getEvaluator().getNumberResult("abs(-0.5)"));
  assertTrue(0.5 == getEvaluator().getNumberResult("abs(-0.5)"));
  assertTrue(0 == getEvaluator().getNumberResult("abs(-0)"));
  assertTrue(0 == getEvaluator().getNumberResult("abs(-0)"));
}
}
 
@Test public void testAbsWithInput() {
@Test public void testAbsWithInput() {
  assertTrue(1 == getEvaluator().getNumberResult("abs('[pos=2]')"));
  assertTrue(1 == getEvaluator().getNumberResult("abs('[pos=2]')"));
  assertTrue(8.43 == getEvaluator().getNumberResult("abs('[pos=1]')"));
  assertTrue(8.43 == getEvaluator().getNumberResult("abs('[pos=1]')"));
}
}
 
@Test public void testAbsWithVariables() {
@Test public void testAbsWithVariables() {
  assertTrue(1 == getEvaluator().getNumberResult("abs('[var=b]')"));
  assertTrue(1 == getEvaluator().getNumberResult("abs('[var=b]')"));
  assertTrue(8.43 == getEvaluator().getNumberResult("abs('[var=a]')"));
  assertTrue(8.43 == getEvaluator().getNumberResult("abs('[var=a]')"));
}
}
 
@Test public void testAbsWithExpressions() {
@Test public void testAbsWithExpressions() {
  assertTrue(5 == getEvaluator().getNumberResult("abs(-abs(5))"));
  assertTrue(5 == getEvaluator().getNumberResult("abs(-abs(5))"));
  assertTrue(5 == getEvaluator().getNumberResult("abs(-abs(abs(-5)))"));
  assertTrue(5 == getEvaluator().getNumberResult("abs(-abs(abs(-5)))"));
}
}
 
@Test (expected=ParserMismatchException.class)//(expected=InvalidEvaluatorFunctionArgumentException.class)
@Test (expected=ParserMismatchException.class)//(expected=InvalidEvaluatorFunctionArgumentException.class)
public void testAbsWithWrongInputCharacter() {
public void testAbsWithWrongInputCharacter() {
  getEvaluator().getNumberResult("abs(a)");
  getEvaluator().getNumberResult("abs(a)");
}
}
 
@Test (expected=UnsupportedEvaluatorFunctionException.class)
@Test (expected=UnsupportedEvaluatorFunctionException.class)
public void testAbsWithTwoArguments() {
public void testAbsWithTwoArguments() {
  getEvaluator().getNumberResult("abs(-2.2, 3.3)");
  getEvaluator().getNumberResult("abs(-2.2, 3.3)");
}
}
 
@Test (expected=UnsupportedEvaluatorFunctionException.class)
@Test (expected=UnsupportedEvaluatorFunctionException.class)
public void testAbsWithThreeArguments() {
public void testAbsWithThreeArguments() {
  getEvaluator().getNumberResult("abs(2.123, -3.55, -1)");
  getEvaluator().getNumberResult("abs(2.123, -3.55, -1)");
}
}
 
@Test (expected=UndefinedExerciseVariableException.class)
@Test (expected=UndefinedExerciseVariableException.class)
public void testAbsWithMissingExcerciseVariable() {
public void testAbsWithMissingExcerciseVariable() {
  getEvaluator().getNumberResult("abs('[var=j]')");
  getEvaluator().getNumberResult("abs('[var=j]')");
}
}
 
@Test (expected=UndefinedFillInVariableException.class)
@Test (expected=UndefinedFillInVariableException.class)
public void testAbsWithMissingInput() {
public void testAbsWithMissingInput() {
  getEvaluator().getNumberResult("abs('[pos=42]')");
  getEvaluator().getNumberResult("abs('[pos=42]')");
}
}
</syntaxhighlight >
</syntaxhighlight >



Version vom 20. Juni 2017, 11:00 Uhr

Beschreibung

Die Funktion ceil rundet eine rationale Zahl auf die nächstgrößere ganze Zahl auf. Die Funktion erwartet eine Zahl als Parameter und gibt eine Zahl zurück.

Syntax

ceil(float zahl)

Parameter

  • zahl - eine aufzurundende rationale Zahl

Return Value

  • Gibt eine Ganzzahl zurück

Beispiele

Standardfälle

ceil('7.3')   --> returns 8
ceil('-2.4')   --> returns -2

Benutzung von Variablen

ceil('[pos=1]')
ceil('[var=a]')

JUnit Tests

@Test public void testAbs() {
  assertTrue(1 == getEvaluator().getNumberResult("abs(1)"));
  assertTrue(1 == getEvaluator().getNumberResult("abs('-1')"));
  assertTrue(0.5 == getEvaluator().getNumberResult("abs(-0.5)"));
  assertTrue(0 == getEvaluator().getNumberResult("abs(-0)"));
}

@Test public void testAbsWithInput() {
  assertTrue(1 == getEvaluator().getNumberResult("abs('[pos=2]')"));
  assertTrue(8.43 == getEvaluator().getNumberResult("abs('[pos=1]')"));
}

@Test public void testAbsWithVariables() {
  assertTrue(1 == getEvaluator().getNumberResult("abs('[var=b]')"));
  assertTrue(8.43 == getEvaluator().getNumberResult("abs('[var=a]')"));
}

@Test public void testAbsWithExpressions() {
  assertTrue(5 == getEvaluator().getNumberResult("abs(-abs(5))"));
  assertTrue(5 == getEvaluator().getNumberResult("abs(-abs(abs(-5)))"));
}

@Test (expected=ParserMismatchException.class)//(expected=InvalidEvaluatorFunctionArgumentException.class)
public void testAbsWithWrongInputCharacter() {
  getEvaluator().getNumberResult("abs(a)");
}

@Test (expected=UnsupportedEvaluatorFunctionException.class)
public void testAbsWithTwoArguments() {
  getEvaluator().getNumberResult("abs(-2.2, 3.3)");
}

@Test (expected=UnsupportedEvaluatorFunctionException.class)
public void testAbsWithThreeArguments() {
  getEvaluator().getNumberResult("abs(2.123, -3.55, -1)");
}

@Test (expected=UndefinedExerciseVariableException.class)
public void testAbsWithMissingExcerciseVariable() {
  getEvaluator().getNumberResult("abs('[var=j]')");
}

@Test (expected=UndefinedFillInVariableException.class)
public void testAbsWithMissingInput() {
  getEvaluator().getNumberResult("abs('[pos=42]')");
}

Hinweise