1 package org.djunits.value.vfloat.scalar;
2
3 import java.util.regex.Matcher;
4
5 import javax.annotation.Generated;
6
7 import org.djunits.Throw;
8 import org.djunits.unit.AccelerationUnit;
9 import org.djunits.unit.DimensionlessUnit;
10 import org.djunits.unit.ForceUnit;
11 import org.djunits.unit.FrequencyUnit;
12 import org.djunits.unit.PowerUnit;
13 import org.djunits.unit.SpeedUnit;
14 import org.djunits.value.util.ValueUtil;
15 import org.djunits.value.vfloat.scalar.base.AbstractFloatScalarRel;
16 import org.djunits.value.vfloat.scalar.base.FloatScalar;
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27 @Generated(value = "org.djunits.generator.GenerateDJUNIT", date = "2022-03-14T11:14:15.180987200Z")
28 public class FloatAcceleration extends AbstractFloatScalarRel<AccelerationUnit, FloatAcceleration>
29 {
30
31 private static final long serialVersionUID = 20150901L;
32
33
34 public static final FloatAccelerationoatAcceleration.html#FloatAcceleration">FloatAcceleration ZERO = new FloatAcceleration(0.0f, AccelerationUnit.SI);
35
36
37 public static final FloatAccelerationloatAcceleration.html#FloatAcceleration">FloatAcceleration ONE = new FloatAcceleration(1.0f, AccelerationUnit.SI);
38
39
40 @SuppressWarnings("checkstyle:constantname")
41 public static final FloatAccelerationloatAcceleration.html#FloatAcceleration">FloatAcceleration NaN = new FloatAcceleration(Float.NaN, AccelerationUnit.SI);
42
43
44 public static final FloatAcceleration POSITIVE_INFINITY =
45 new FloatAcceleration(Float.POSITIVE_INFINITY, AccelerationUnit.SI);
46
47
48 public static final FloatAcceleration NEGATIVE_INFINITY =
49 new FloatAcceleration(Float.NEGATIVE_INFINITY, AccelerationUnit.SI);
50
51
52 public static final FloatAccelerationeration.html#FloatAcceleration">FloatAcceleration POS_MAXVALUE = new FloatAcceleration(Float.MAX_VALUE, AccelerationUnit.SI);
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54
55 public static final FloatAccelerationeration.html#FloatAcceleration">FloatAcceleration NEG_MAXVALUE = new FloatAcceleration(-Float.MAX_VALUE, AccelerationUnit.SI);
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62 public FloatAcceleration(final float value, final AccelerationUnit unit)
63 {
64 super(value, unit);
65 }
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71 public FloatAccelerationar/FloatAcceleration.html#FloatAcceleration">FloatAcceleration(final FloatAcceleration value)
72 {
73 super(value);
74 }
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81 public FloatAcceleration(final double value, final AccelerationUnit unit)
82 {
83 super((float) value, unit);
84 }
85
86
87 @Override
88 public final FloatAcceleration instantiateRel(final float value, final AccelerationUnit unit)
89 {
90 return new FloatAcceleration(value, unit);
91 }
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98 public static final FloatAcceleration instantiateSI(final float value)
99 {
100 return new FloatAcceleration(value, AccelerationUnit.SI);
101 }
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110 public static FloatAccelerationatAcceleration.html#FloatAcceleration">FloatAccelerationleration.html#FloatAcceleration">FloatAcceleration interpolate(final FloatAccelerationatAcceleration.html#FloatAcceleration">FloatAcceleration zero, final FloatAcceleration one, final float ratio)
111 {
112 return new FloatAcceleration(zero.getInUnit() * (1 - ratio) + one.getInUnit(zero.getDisplayUnit()) * ratio,
113 zero.getDisplayUnit());
114 }
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122 public static FloatAccelerationloatAcceleration.html#FloatAcceleration">FloatAccelerationloatAcceleration.html#FloatAcceleration">FloatAcceleration max(final FloatAccelerationloatAcceleration.html#FloatAcceleration">FloatAcceleration r1, final FloatAcceleration r2)
123 {
124 return r1.gt(r2) ? r1 : r2;
125 }
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134 public static FloatAccelerationloatAcceleration.html#FloatAcceleration">FloatAccelerationloatAcceleration.html#FloatAcceleration">FloatAcceleration max(final FloatAccelerationloatAcceleration.html#FloatAcceleration">FloatAcceleration r1, final FloatAcceleration r2, final FloatAcceleration... rn)
135 {
136 FloatAcceleration maxr = r1.gt(r2) ? r1 : r2;
137 for (FloatAcceleration r : rn)
138 {
139 if (r.gt(maxr))
140 {
141 maxr = r;
142 }
143 }
144 return maxr;
145 }
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153 public static FloatAccelerationloatAcceleration.html#FloatAcceleration">FloatAccelerationloatAcceleration.html#FloatAcceleration">FloatAcceleration min(final FloatAccelerationloatAcceleration.html#FloatAcceleration">FloatAcceleration r1, final FloatAcceleration r2)
154 {
155 return r1.lt(r2) ? r1 : r2;
156 }
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165 public static FloatAccelerationloatAcceleration.html#FloatAcceleration">FloatAccelerationloatAcceleration.html#FloatAcceleration">FloatAcceleration min(final FloatAccelerationloatAcceleration.html#FloatAcceleration">FloatAcceleration r1, final FloatAcceleration r2, final FloatAcceleration... rn)
166 {
167 FloatAcceleration minr = r1.lt(r2) ? r1 : r2;
168 for (FloatAcceleration r : rn)
169 {
170 if (r.lt(minr))
171 {
172 minr = r;
173 }
174 }
175 return minr;
176 }
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186
187 public static FloatAcceleration valueOf(final String text)
188 {
189 Throw.whenNull(text, "Error parsing FloatAcceleration: text to parse is null");
190 Throw.when(text.length() == 0, IllegalArgumentException.class, "Error parsing FloatAcceleration: empty text to parse");
191 Matcher matcher = ValueUtil.NUMBER_PATTERN.matcher(text);
192 if (matcher.find())
193 {
194 int index = matcher.end();
195 String unitString = text.substring(index).trim();
196 String valueString = text.substring(0, index).trim();
197 AccelerationUnit unit = AccelerationUnit.BASE.getUnitByAbbreviation(unitString);
198 if (unit != null)
199 {
200 float f = Float.parseFloat(valueString);
201 return new FloatAcceleration(f, unit);
202 }
203 }
204 throw new IllegalArgumentException("Error parsing FloatAcceleration from " + text);
205 }
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214
215 public static FloatAcceleration of(final float value, final String unitString)
216 {
217 Throw.whenNull(unitString, "Error parsing FloatAcceleration: unitString is null");
218 Throw.when(unitString.length() == 0, IllegalArgumentException.class,
219 "Error parsing FloatAcceleration: empty unitString");
220 AccelerationUnit unit = AccelerationUnit.BASE.getUnitByAbbreviation(unitString);
221 if (unit != null)
222 {
223 return new FloatAcceleration(value, unit);
224 }
225 throw new IllegalArgumentException("Error parsing FloatAcceleration with unit " + unitString);
226 }
227
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232
233 public final FloatDimensionless divide(final FloatAcceleration v)
234 {
235 return new FloatDimensionless(this.si / v.si, DimensionlessUnit.SI);
236 }
237
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243 public final FloatForce times(final FloatMass v)
244 {
245 return new FloatForce(this.si * v.si, ForceUnit.SI);
246 }
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251
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253 public final FloatSpeed times(final FloatDuration v)
254 {
255 return new FloatSpeed(this.si * v.si, SpeedUnit.SI);
256 }
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263 public final FloatSpeed divide(final FloatFrequency v)
264 {
265 return new FloatSpeed(this.si / v.si, SpeedUnit.SI);
266 }
267
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273 public final FloatFrequency divide(final FloatSpeed v)
274 {
275 return new FloatFrequency(this.si / v.si, FrequencyUnit.SI);
276 }
277
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281
282
283 public final FloatPower times(final FloatMomentum v)
284 {
285 return new FloatPower(this.si * v.si, PowerUnit.SI);
286 }
287
288
289 @Override
290 public FloatSIScalar reciprocal()
291 {
292 return FloatScalar.divide(FloatDimensionless.ONE, this);
293 }
294
295 }