Examples of rescale()


Examples of com.xuggle.xuggler.IRational.rescale()

      if (stream.getStartTime() != Global.NO_PTS && stream.getStartTime() > 0
          && stream.getTimeBase() != null)
      {
        IRational defTimeBase = IRational.make(1,
            (int) Global.DEFAULT_PTS_PER_SECOND);
        tsOffset = defTimeBase.rescale(stream.getStartTime(), stream
            .getTimeBase());
      }
      /**
       * And look up the appropriate objects that are working on that stream.
       */
 
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Examples of com.xuggle.xuggler.IRational.rescale()

      if (stream.getStartTime() != Global.NO_PTS && stream.getStartTime() > 0
          && stream.getTimeBase() != null)
      {
        IRational defTimeBase = IRational.make(1,
            (int) Global.DEFAULT_PTS_PER_SECOND);
        tsOffset = defTimeBase.rescale(stream.getStartTime(), stream
            .getTimeBase());
      }
      /**
       * And look up the appropriate objects that are working on that stream.
       */
 
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Examples of org.apache.commons.math.ode.sampling.NordsieckStepInterpolator.rescale()

        start(t0, y, t);
        interpolator.reinitialize(stepStart, stepSize, scaled, nordsieck);
        interpolator.storeTime(stepStart);

        double hNew = stepSize;
        interpolator.rescale(hNew);

        isLastStep = false;
        do {

            double error = 10;
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Examples of org.apache.commons.math.ode.sampling.NordsieckStepInterpolator.rescale()

                if (error >= 1.0) {
                    // reject the step and attempt to reduce error by stepsize control
                    final double factor = computeStepGrowShrinkFactor(error);
                    hNew = filterStep(stepSize * factor, forward, false);
                    interpolator.rescale(hNew);
                }
            }

            // evaluate a final estimate of the derivative (second E in the PECE sequence)
            final double stepEnd = stepStart + stepSize;
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Examples of org.apache.commons.math.ode.sampling.NordsieckStepInterpolator.rescale()

                final boolean filteredNextIsLast = forward ? (filteredNextT >= t) : (filteredNextT <= t);
                if (filteredNextIsLast) {
                    hNew = t - stepStart;
                }

                interpolator.rescale(hNew);
            }

        } while (!isLastStep);

        final double stopTime  = stepStart;
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Examples of org.apache.commons.math.ode.sampling.NordsieckStepInterpolator.rescale()

        interpolator.storeTime(stepStart);
        final int lastRow = nordsieck.getRowDimension() - 1;

        // reuse the step that was chosen by the starter integrator
        double hNew = stepSize;
        interpolator.rescale(hNew);

        // main integration loop
        isLastStep = false;
        do {
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Examples of org.apache.commons.math.ode.sampling.NordsieckStepInterpolator.rescale()

                if (error >= 1.0) {
                    // reject the step and attempt to reduce error by stepsize control
                    final double factor = computeStepGrowShrinkFactor(error);
                    hNew = filterStep(stepSize * factor, forward, false);
                    interpolator.rescale(hNew);

                }
            }

            // predict a first estimate of the state at step end
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Examples of org.apache.commons.math.ode.sampling.NordsieckStepInterpolator.rescale()

                final boolean filteredNextIsLast = forward ? (filteredNextT >= t) : (filteredNextT <= t);
                if (filteredNextIsLast) {
                    hNew = t - stepStart;
                }

                interpolator.rescale(hNew);

            }

        } while (!isLastStep);
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Examples of org.apache.commons.math3.ode.sampling.NordsieckStepInterpolator.rescale()

        interpolator.storeTime(stepStart);
        final int lastRow = nordsieck.getRowDimension() - 1;

        // reuse the step that was chosen by the starter integrator
        double hNew = stepSize;
        interpolator.rescale(hNew);

        // main integration loop
        isLastStep = false;
        do {
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Examples of org.apache.commons.math3.ode.sampling.NordsieckStepInterpolator.rescale()

                if (error >= 1.0) {
                    // reject the step and attempt to reduce error by stepsize control
                    final double factor = computeStepGrowShrinkFactor(error);
                    hNew = filterStep(stepSize * factor, forward, false);
                    interpolator.rescale(hNew);

                }
            }

            // predict a first estimate of the state at step end
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