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/* Formatter.java -- printf-style formatting
   Copyright (C) 2005 Free Software Foundation, Inc.

This file is part of GNU Classpath.

GNU Classpath is free software; you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation; either version 2, or (at your option)
any later version.
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GNU Classpath is distributed in the hope that it will be useful, but
WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
General Public License for more details.

You should have received a copy of the GNU General Public License
along with GNU Classpath; see the file COPYING.  If not, write to the
Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA
02110-1301 USA.

Linking this library statically or dynamically with other modules is
making a combined work based on this library.  Thus, the terms and
conditions of the GNU General Public License cover the whole
combination.

As a special exception, the copyright holders of this library give you
permission to link this library with independent modules to produce an
executable, regardless of the license terms of these independent
modules, and to copy and distribute the resulting executable under
terms of your choice, provided that you also meet, for each linked
independent module, the terms and conditions of the license of that
module.  An independent module is a module which is not derived from
or based on this library.  If you modify this library, you may extend
this exception to your version of the library, but you are not
obligated to do so.  If you do not wish to do so, delete this
exception statement from your version. */


package java.util;

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import gnu.java.lang.CPStringBuilder;

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import java.io.Closeable;
import java.io.File;
import java.io.FileNotFoundException;
import java.io.FileOutputStream;
import java.io.Flushable;
import java.io.IOException;
import java.io.OutputStream;
import java.io.OutputStreamWriter;
import java.io.PrintStream;
import java.io.UnsupportedEncodingException;
import java.math.BigInteger;
import java.text.DateFormatSymbols;
import java.text.DecimalFormatSymbols;

import gnu.classpath.SystemProperties;

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/**
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 * <p>
 * A Java formatter for <code>printf</code>-style format strings,
 * as seen in the C programming language.   This differs from the
 * C interpretation of such strings by performing much stricter
 * checking of format specifications and their corresponding
 * arguments.  While unknown conversions will be ignored in C,
 * and invalid conversions will only produce compiler warnings,
 * the Java version utilises a full range of run-time exceptions to
 * handle these cases.  The Java version is also more customisable
 * by virtue of the provision of the {@link Formattable} interface,
 * which allows an arbitrary class to be formatted by the formatter.
 * </p>
 * <p>
 * The formatter is accessible by more convienient static methods.
 * For example, streams now have appropriate format methods
 * (the equivalent of <code>fprintf</code>) as do <code>String</code>
 * objects (the equivalent of <code>sprintf</code>).
 * </p>
 * <p>
 * <strong>Note</strong>: the formatter is not thread-safe.  For
 * multi-threaded access, external synchronization should be provided.
 * </p>
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 *
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 * @author Tom Tromey (tromey@redhat.com)
 * @author Andrew John Hughes (gnu_andrew@member.fsf.org)
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 * @since 1.5
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 */
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public final class Formatter
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  implements Closeable, Flushable
{

  /**
   * The output of the formatter.
   */
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  private Appendable out;
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  /**
   * The locale used by the formatter.
   */
  private Locale locale;

  /**
   * Whether or not the formatter is closed.
   */
  private boolean closed;

  /**
   * The last I/O exception thrown by the output stream.
   */
  private IOException ioException;

  // Some state used when actually formatting.
  /**
   * The format string.
   */
  private String format;

  /**
   * The current index into the string.
   */
  private int index;

  /**
   * The length of the format string.
   */
  private int length;

  /**
   * The formatting locale.
   */
  private Locale fmtLocale;

  // Note that we include '-' twice.  The flags are ordered to
  // correspond to the values in FormattableFlags, and there is no
  // flag (in the sense of this field used when parsing) for
  // UPPERCASE; the second '-' serves as a placeholder.
  /**
   * A string used to index into the formattable flags.
   */
  private static final String FLAGS = "--#+ 0,(";

  /**
   * The system line separator.
   */
  private static final String lineSeparator
    = SystemProperties.getProperty("line.separator");

  /**
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   * The type of numeric output format for a {@link BigDecimal}.
   */
  public enum BigDecimalLayoutForm
  {
    DECIMAL_FLOAT,
    SCIENTIFIC
  }

  /**
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   * Constructs a new <code>Formatter</code> using the default
   * locale and a {@link StringBuilder} as the output stream.
   */
  public Formatter()
  {
    this(null, Locale.getDefault());
  }

  /**
   * Constructs a new <code>Formatter</code> using the specified
   * locale and a {@link StringBuilder} as the output stream.
   * If the locale is <code>null</code>, then no localization
   * is applied.
   *
   * @param loc the locale to use.
   */
  public Formatter(Locale loc)
  {
    this(null, loc);
  }

  /**
   * Constructs a new <code>Formatter</code> using the default
   * locale and the specified output stream.
   *
   * @param app the output stream to use.
   */
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  public Formatter(Appendable app)
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  {
    this(app, Locale.getDefault());
  }

  /**
   * Constructs a new <code>Formatter</code> using the specified
   * locale and the specified output stream.  If the locale is
   * <code>null</code>, then no localization is applied.
   *
   * @param app the output stream to use.
   * @param loc the locale to use.
   */
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  public Formatter(Appendable app, Locale loc)
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  {
    this.out = app == null ? new StringBuilder() : app;
    this.locale = loc;
  }

  /**
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   * Constructs a new <code>Formatter</code> using the default
   * locale and character set, with the specified file as the
   * output stream.
   *
   * @param file the file to use for output.
   * @throws FileNotFoundException if the file does not exist
   *                               and can not be created.
   * @throws SecurityException if a security manager is present
   *                           and doesn't allow writing to the file.
   */
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  public Formatter(File file)
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    throws FileNotFoundException
  {
    this(new OutputStreamWriter(new FileOutputStream(file)));
  }

  /**
   * Constructs a new <code>Formatter</code> using the default
   * locale, with the specified file as the output stream
   * and the supplied character set.
   *
   * @param file the file to use for output.
   * @param charset the character set to use for output.
   * @throws FileNotFoundException if the file does not exist
   *                               and can not be created.
   * @throws SecurityException if a security manager is present
   *                           and doesn't allow writing to the file.
   * @throws UnsupportedEncodingException if the supplied character
   *                                      set is not supported.
   */
  public Formatter(File file, String charset)
    throws FileNotFoundException, UnsupportedEncodingException
  {
    this(file, charset, Locale.getDefault());
  }

  /**
   * Constructs a new <code>Formatter</code> using the specified
   * file as the output stream with the supplied character set
   * and locale.  If the locale is <code>null</code>, then no
   * localization is applied.
   *
   * @param file the file to use for output.
   * @param charset the character set to use for output.
   * @param loc the locale to use.
   * @throws FileNotFoundException if the file does not exist
   *                               and can not be created.
   * @throws SecurityException if a security manager is present
   *                           and doesn't allow writing to the file.
   * @throws UnsupportedEncodingException if the supplied character
   *                                      set is not supported.
   */
  public Formatter(File file, String charset, Locale loc)
    throws FileNotFoundException, UnsupportedEncodingException
  {
    this(new OutputStreamWriter(new FileOutputStream(file), charset),
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         loc);
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  }

  /**
   * Constructs a new <code>Formatter</code> using the default
   * locale and character set, with the specified output stream.
   *
   * @param out the output stream to use.
   */
  public Formatter(OutputStream out)
  {
    this(new OutputStreamWriter(out));
  }

  /**
   * Constructs a new <code>Formatter</code> using the default
   * locale, with the specified file output stream and the
   * supplied character set.
   *
   * @param out the output stream.
   * @param charset the character set to use for output.
   * @throws UnsupportedEncodingException if the supplied character
   *                                      set is not supported.
   */
  public Formatter(OutputStream out, String charset)
    throws UnsupportedEncodingException
  {
    this(out, charset, Locale.getDefault());
  }

  /**
   * Constructs a new <code>Formatter</code> using the specified
   * output stream with the supplied character set and locale.
   * If the locale is <code>null</code>, then no localization is
   * applied.
   *
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   * @param out the output stream.
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   * @param charset the character set to use for output.
   * @param loc the locale to use.
   * @throws UnsupportedEncodingException if the supplied character
   *                                      set is not supported.
   */
  public Formatter(OutputStream out, String charset, Locale loc)
    throws UnsupportedEncodingException
  {
    this(new OutputStreamWriter(out, charset), loc);
  }

  /**
   * Constructs a new <code>Formatter</code> using the default
   * locale with the specified output stream.  The character
   * set used is that of the output stream.
   *
   * @param out the output stream to use.
   */
  public Formatter(PrintStream out)
  {
    this((Appendable) out);
  }

  /**
   * Constructs a new <code>Formatter</code> using the default
   * locale and character set, with the specified file as the
   * output stream.
   *
   * @param file the file to use for output.
   * @throws FileNotFoundException if the file does not exist
   *                               and can not be created.
   * @throws SecurityException if a security manager is present
   *                           and doesn't allow writing to the file.
   */
  public Formatter(String file) throws FileNotFoundException
  {
    this(new OutputStreamWriter(new FileOutputStream(file)));
  }

  /**
   * Constructs a new <code>Formatter</code> using the default
   * locale, with the specified file as the output stream
   * and the supplied character set.
   *
   * @param file the file to use for output.
   * @param charset the character set to use for output.
   * @throws FileNotFoundException if the file does not exist
   *                               and can not be created.
   * @throws SecurityException if a security manager is present
   *                           and doesn't allow writing to the file.
   * @throws UnsupportedEncodingException if the supplied character
   *                                      set is not supported.
   */
  public Formatter(String file, String charset)
    throws FileNotFoundException, UnsupportedEncodingException
  {
    this(file, charset, Locale.getDefault());
  }

  /**
   * Constructs a new <code>Formatter</code> using the specified
   * file as the output stream with the supplied character set
   * and locale.  If the locale is <code>null</code>, then no
   * localization is applied.
   *
   * @param file the file to use for output.
   * @param charset the character set to use for output.
   * @param loc the locale to use.
   * @throws FileNotFoundException if the file does not exist
   *                               and can not be created.
   * @throws SecurityException if a security manager is present
   *                           and doesn't allow writing to the file.
   * @throws UnsupportedEncodingException if the supplied character
   *                                      set is not supported.
   */
  public Formatter(String file, String charset, Locale loc)
    throws FileNotFoundException, UnsupportedEncodingException
  {
    this(new OutputStreamWriter(new FileOutputStream(file), charset),
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         loc);
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  }

  /**
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   * Closes the formatter, so as to release used resources.
   * If the underlying output stream supports the {@link Closeable}
   * interface, then this is also closed.  Attempts to use
   * a formatter instance, via any method other than
   * {@link #ioException()}, after closure results in a
   * {@link FormatterClosedException}.
   */
  public void close()
  {
    if (closed)
      return;
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    try
      {
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        if (out instanceof Closeable)
          ((Closeable) out).close();
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      }
    catch (IOException _)
      {
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        // FIXME: do we ignore these or do we set ioException?
        // The docs seem to indicate that we should ignore.
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      }
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    closed = true;
  }

  /**
   * Flushes the formatter, writing any cached data to the output
   * stream.  If the underlying output stream supports the
   * {@link Flushable} interface, it is also flushed.
   *
   * @throws FormatterClosedException if the formatter is closed.
   */
  public void flush()
  {
    if (closed)
      throw new FormatterClosedException();
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    try
      {
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        if (out instanceof Flushable)
          ((Flushable) out).flush();
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      }
    catch (IOException _)
      {
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        // FIXME: do we ignore these or do we set ioException?
        // The docs seem to indicate that we should ignore.
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      }
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  }

  /**
   * Return the name corresponding to a flag.
   *
   * @param flags the flag to return the name of.
   * @return the name of the flag.
   */
  private String getName(int flags)
  {
    // FIXME: do we want all the flags in here?
    // Or should we redo how this is reported?
    int bit = Integer.numberOfTrailingZeros(flags);
    return FLAGS.substring(bit, bit + 1);
  }

  /**
   * Verify the flags passed to a conversion.
   *
   * @param flags the flags to verify.
   * @param allowed the allowed flags mask.
   * @param conversion the conversion character.
   */
  private void checkFlags(int flags, int allowed, char conversion)
  {
    flags &= ~allowed;
    if (flags != 0)
      throw new FormatFlagsConversionMismatchException(getName(flags),
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                                                       conversion);
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  }

  /**
   * Throw an exception if a precision was specified.
   *
   * @param precision the precision value (-1 indicates not specified).
   */
  private void noPrecision(int precision)
  {
    if (precision != -1)
      throw new IllegalFormatPrecisionException(precision);
  }

  /**
   * Apply the numeric localization algorithm to a StringBuilder.
   *
   * @param builder the builder to apply to.
   * @param flags the formatting flags to use.
   * @param width the width of the numeric value.
   * @param isNegative true if the value is negative.
   */
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  private void applyLocalization(CPStringBuilder builder, int flags, int width,
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                                 boolean isNegative)
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  {
    DecimalFormatSymbols dfsyms;
    if (fmtLocale == null)
      dfsyms = new DecimalFormatSymbols();
    else
      dfsyms = new DecimalFormatSymbols(fmtLocale);

    // First replace each digit.
    char zeroDigit = dfsyms.getZeroDigit();
    int decimalOffset = -1;
    for (int i = builder.length() - 1; i >= 0; --i)
      {
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        char c = builder.charAt(i);
        if (c >= '0' && c <= '9')
          builder.setCharAt(i, (char) (c - '0' + zeroDigit));
        else if (c == '.')
          {
            assert decimalOffset == -1;
            decimalOffset = i;
          }
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      }

    // Localize the decimal separator.
    if (decimalOffset != -1)
      {
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        builder.deleteCharAt(decimalOffset);
        builder.insert(decimalOffset, dfsyms.getDecimalSeparator());
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      }
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    // Insert the grouping separators.
    if ((flags & FormattableFlags.COMMA) != 0)
      {
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        char groupSeparator = dfsyms.getGroupingSeparator();
        int groupSize = 3;      // FIXME
        int offset = (decimalOffset == -1) ? builder.length() : decimalOffset;
        // We use '>' because we don't want to insert a separator
        // before the first digit.
        for (int i = offset - groupSize; i > 0; i -= groupSize)
          builder.insert(i, groupSeparator);
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      }

    if ((flags & FormattableFlags.ZERO) != 0)
      {
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        // Zero fill.  Note that according to the algorithm we do not
        // insert grouping separators here.
        for (int i = width - builder.length(); i > 0; --i)
          builder.insert(0, zeroDigit);
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      }

    if (isNegative)
      {
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        if ((flags & FormattableFlags.PAREN) != 0)
          {
            builder.insert(0, '(');
            builder.append(')');
          }
        else
          builder.insert(0, '-');
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      }
    else if ((flags & FormattableFlags.PLUS) != 0)
      builder.insert(0, '+');
    else if ((flags & FormattableFlags.SPACE) != 0)
      builder.insert(0, ' ');
  }

  /**
   * A helper method that handles emitting a String after applying
   * precision, width, justification, and upper case flags.
   *
   * @param arg the string to emit.
   * @param flags the formatting flags to use.
   * @param width the width to use.
   * @param precision the precision to use.
   * @throws IOException if the output stream throws an I/O error.
   */
  private void genericFormat(String arg, int flags, int width, int precision)
    throws IOException
  {
    if ((flags & FormattableFlags.UPPERCASE) != 0)
      {
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        if (fmtLocale == null)
          arg = arg.toUpperCase();
        else
          arg = arg.toUpperCase(fmtLocale);
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      }

    if (precision >= 0 && arg.length() > precision)
      arg = arg.substring(0, precision);

    boolean leftJustify = (flags & FormattableFlags.LEFT_JUSTIFY) != 0;
    if (leftJustify && width == -1)
      throw new MissingFormatWidthException("fixme");
    if (! leftJustify && arg.length() < width)
      {
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        for (int i = width - arg.length(); i > 0; --i)
          out.append(' ');
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      }
    out.append(arg);
    if (leftJustify && arg.length() < width)
      {
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        for (int i = width - arg.length(); i > 0; --i)
          out.append(' ');
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      }
  }

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  /**
   * Emit a boolean.
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   *
   * @param arg the boolean to emit.
   * @param flags the formatting flags to use.
   * @param width the width to use.
   * @param precision the precision to use.
   * @param conversion the conversion character.
   * @throws IOException if the output stream throws an I/O error.
   */
  private void booleanFormat(Object arg, int flags, int width, int precision,
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                             char conversion)
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    throws IOException
  {
    checkFlags(flags,
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               FormattableFlags.LEFT_JUSTIFY | FormattableFlags.UPPERCASE,
               conversion);
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    String result;
    if (arg instanceof Boolean)
      result = String.valueOf((Boolean) arg);
    else
      result = arg == null ? "false" : "true";
    genericFormat(result, flags, width, precision);
  }

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  /**
   * Emit a hash code.
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   *
   * @param arg the hash code to emit.
   * @param flags the formatting flags to use.
   * @param width the width to use.
   * @param precision the precision to use.
   * @param conversion the conversion character.
   * @throws IOException if the output stream throws an I/O error.
   */
  private void hashCodeFormat(Object arg, int flags, int width, int precision,
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                              char conversion)
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    throws IOException
  {
    checkFlags(flags,
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               FormattableFlags.LEFT_JUSTIFY | FormattableFlags.UPPERCASE,
               conversion);
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    genericFormat(arg == null ? "null" : Integer.toHexString(arg.hashCode()),
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                  flags, width, precision);
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  }

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  /**
   * Emit a String or Formattable conversion.
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   *
   * @param arg the String or Formattable to emit.
   * @param flags the formatting flags to use.
   * @param width the width to use.
   * @param precision the precision to use.
   * @param conversion the conversion character.
   * @throws IOException if the output stream throws an I/O error.
   */
  private void stringFormat(Object arg, int flags, int width, int precision,
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                            char conversion)
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    throws IOException
  {
    if (arg instanceof Formattable)
      {
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        checkFlags(flags,
                   (FormattableFlags.LEFT_JUSTIFY
                    | FormattableFlags.UPPERCASE
                    | FormattableFlags.ALTERNATE),
                   conversion);
        Formattable fmt = (Formattable) arg;
        fmt.formatTo(this, flags, width, precision);
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      }
    else
      {
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        checkFlags(flags,
                   FormattableFlags.LEFT_JUSTIFY | FormattableFlags.UPPERCASE,
                   conversion);
        genericFormat(arg == null ? "null" : arg.toString(), flags, width,
                      precision);
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      }
  }

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  /**
   * Emit a character.
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   *
   * @param arg the character to emit.
   * @param flags the formatting flags to use.
   * @param width the width to use.
   * @param precision the precision to use.
   * @param conversion the conversion character.
   * @throws IOException if the output stream throws an I/O error.
   */
  private void characterFormat(Object arg, int flags, int width, int precision,
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                               char conversion)
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    throws IOException
  {
    checkFlags(flags,
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               FormattableFlags.LEFT_JUSTIFY | FormattableFlags.UPPERCASE,
               conversion);
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    noPrecision(precision);

    int theChar;
    if (arg instanceof Character)
      theChar = ((Character) arg).charValue();
    else if (arg instanceof Byte)
      theChar = (char) (((Byte) arg).byteValue ());
    else if (arg instanceof Short)
      theChar = (char) (((Short) arg).shortValue ());
    else if (arg instanceof Integer)
      {
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        theChar = ((Integer) arg).intValue();
        if (! Character.isValidCodePoint(theChar))
          throw new IllegalFormatCodePointException(theChar);
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      }
    else
      throw new IllegalFormatConversionException(conversion, arg.getClass());
    String result = new String(Character.toChars(theChar));
    genericFormat(result, flags, width, precision);
  }

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  /**
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   * Emit a '%'.
   *
   * @param flags the formatting flags to use.
   * @param width the width to use.
   * @param precision the precision to use.
   * @throws IOException if the output stream throws an I/O error.
   */
  private void percentFormat(int flags, int width, int precision)
    throws IOException
  {
    checkFlags(flags, FormattableFlags.LEFT_JUSTIFY, '%');
    noPrecision(precision);
    genericFormat("%", flags, width, precision);
  }

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  /**
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   * Emit a newline.
   *
   * @param flags the formatting flags to use.
   * @param width the width to use.
   * @param precision the precision to use.
   * @throws IOException if the output stream throws an I/O error.
   */
  private void newLineFormat(int flags, int width, int precision)
    throws IOException
  {
    checkFlags(flags, 0, 'n');
    noPrecision(precision);
    if (width != -1)
      throw new IllegalFormatWidthException(width);
    genericFormat(lineSeparator, flags, width, precision);
  }

  /**
   * Helper method to do initial formatting and checking for integral
   * conversions.
   *
   * @param arg the formatted argument.
   * @param flags the formatting flags to use.
   * @param width the width to use.
   * @param precision the precision to use.
   * @param radix the radix of the number.
   * @param conversion the conversion character.
   * @return the result.
   */
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  private CPStringBuilder basicIntegralConversion(Object arg, int flags,
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                                                  int width, int precision,
                                                  int radix, char conversion)
749 750 751 752 753 754
  {
    assert radix == 8 || radix == 10 || radix == 16;
    noPrecision(precision);

    // Some error checking.
    if ((flags & FormattableFlags.PLUS) != 0
755
        && (flags & FormattableFlags.SPACE) != 0)
756 757 758 759 760 761 762 763
      throw new IllegalFormatFlagsException(getName(flags));

    if ((flags & FormattableFlags.LEFT_JUSTIFY) != 0 && width == -1)
      throw new MissingFormatWidthException("fixme");

    // Do the base translation of the value to a string.
    String result;
    int basicFlags = (FormattableFlags.LEFT_JUSTIFY
764 765 766 767
                      // We already handled any possible error when
                      // parsing.
                      | FormattableFlags.UPPERCASE
                      | FormattableFlags.ZERO);
768 769
    if (radix == 10)
      basicFlags |= (FormattableFlags.PLUS
770 771 772
                     | FormattableFlags.SPACE
                     | FormattableFlags.COMMA
                     | FormattableFlags.PAREN);
773 774 775 776 777
    else
      basicFlags |= FormattableFlags.ALTERNATE;

    if (arg instanceof BigInteger)
      {
778 779 780 781 782 783 784 785
        checkFlags(flags,
                   (basicFlags
                    | FormattableFlags.PLUS
                    | FormattableFlags.SPACE
                    | FormattableFlags.PAREN),
                   conversion);
        BigInteger bi = (BigInteger) arg;
        result = bi.toString(radix);
786 787
      }
    else if (arg instanceof Number
788 789
             && ! (arg instanceof Float)
             && ! (arg instanceof Double))
790
      {
791 792 793 794 795 796 797 798
        checkFlags(flags, basicFlags, conversion);
        long value = ((Number) arg).longValue ();
        if (radix == 8)
          result = Long.toOctalString(value);
        else if (radix == 16)
          result = Long.toHexString(value);
        else
          result = Long.toString(value);
799 800 801 802
      }
    else
      throw new IllegalFormatConversionException(conversion, arg.getClass());

803
    return new CPStringBuilder(result);
804 805
  }

806 807 808
  /**
   * Emit a hex or octal value.
   *
809 810 811 812 813 814 815 816 817
   * @param arg the hexadecimal or octal value.
   * @param flags the formatting flags to use.
   * @param width the width to use.
   * @param precision the precision to use.
   * @param radix the radix of the number.
   * @param conversion the conversion character.
   * @throws IOException if the output stream throws an I/O error.
   */
  private void hexOrOctalConversion(Object arg, int flags, int width,
818 819
                                    int precision, int radix,
                                    char conversion)
820 821 822 823
    throws IOException
  {
    assert radix == 8 || radix == 16;

824
    CPStringBuilder builder = basicIntegralConversion(arg, flags, width,
825 826
                                                      precision, radix,
                                                      conversion);
827 828 829 830 831
    int insertPoint = 0;

    // Insert the sign.
    if (builder.charAt(0) == '-')
      {
832 833 834 835
        // Already inserted.  Note that we don't insert a sign, since
        // the only case where it is needed it BigInteger, and it has
        // already been inserted by toString.
        ++insertPoint;
836 837 838
      }
    else if ((flags & FormattableFlags.PLUS) != 0)
      {
839 840
        builder.insert(insertPoint, '+');
        ++insertPoint;
841 842 843
      }
    else if ((flags & FormattableFlags.SPACE) != 0)
      {
844 845
        builder.insert(insertPoint, ' ');
        ++insertPoint;
846 847 848 849 850
      }

    // Insert the radix prefix.
    if ((flags & FormattableFlags.ALTERNATE) != 0)
      {
851 852
        builder.insert(insertPoint, radix == 8 ? "0" : "0x");
        insertPoint += radix == 8 ? 1 : 2;
853 854 855 856 857 858
      }

    // Now justify the result.
    int resultWidth = builder.length();
    if (resultWidth < width)
      {
859 860 861 862 863 864 865 866 867 868 869 870 871 872 873
        char fill = ((flags & FormattableFlags.ZERO) != 0) ? '0' : ' ';
        if ((flags & FormattableFlags.LEFT_JUSTIFY) != 0)
          {
            // Left justify.
            if (fill == ' ')
              insertPoint = builder.length();
          }
        else
          {
            // Right justify.  Insert spaces before the radix prefix
            // and sign.
            insertPoint = 0;
          }
        while (resultWidth++ < width)
          builder.insert(insertPoint, fill);
874 875 876 877 878
      }

    String result = builder.toString();
    if ((flags & FormattableFlags.UPPERCASE) != 0)
      {
879 880 881 882
        if (fmtLocale == null)
          result = result.toUpperCase();
        else
          result = result.toUpperCase(fmtLocale);
883 884 885 886 887
      }

    out.append(result);
  }

888 889 890
  /**
   * Emit a decimal value.
   *
891 892 893 894 895 896 897 898
   * @param arg the hexadecimal or octal value.
   * @param flags the formatting flags to use.
   * @param width the width to use.
   * @param precision the precision to use.
   * @param conversion the conversion character.
   * @throws IOException if the output stream throws an I/O error.
   */
  private void decimalConversion(Object arg, int flags, int width,
899
                                 int precision, char conversion)
900 901
    throws IOException
  {
902
    CPStringBuilder builder = basicIntegralConversion(arg, flags, width,
903 904
                                                      precision, 10,
                                                      conversion);
905 906 907
    boolean isNegative = false;
    if (builder.charAt(0) == '-')
      {
908 909 910
        // Sign handling is done during localization.
        builder.deleteCharAt(0);
        isNegative = true;
911 912 913 914 915 916
      }

    applyLocalization(builder, flags, width, isNegative);
    genericFormat(builder.toString(), flags, width, precision);
  }

917 918
  /**
   * Emit a single date or time conversion to a StringBuilder.
919 920 921 922 923 924
   *
   * @param builder the builder to write to.
   * @param cal the calendar to use in the conversion.
   * @param conversion the formatting character to specify the type of data.
   * @param syms the date formatting symbols.
   */
925
  private void singleDateTimeConversion(CPStringBuilder builder, Calendar cal,
926 927
                                        char conversion,
                                        DateFormatSymbols syms)
928 929 930 931 932 933
  {
    int oldLen = builder.length();
    int digits = -1;
    switch (conversion)
      {
      case 'H':
934 935 936
        builder.append(cal.get(Calendar.HOUR_OF_DAY));
        digits = 2;
        break;
937
      case 'I':
938 939 940
        builder.append(cal.get(Calendar.HOUR));
        digits = 2;
        break;
941
      case 'k':
942 943
        builder.append(cal.get(Calendar.HOUR_OF_DAY));
        break;
944
      case 'l':
945 946
        builder.append(cal.get(Calendar.HOUR));
        break;
947
      case 'M':
948 949 950
        builder.append(cal.get(Calendar.MINUTE));
        digits = 2;
        break;
951
      case 'S':
952 953 954
        builder.append(cal.get(Calendar.SECOND));
        digits = 2;
        break;
955
      case 'N':
956 957 958
        // FIXME: nanosecond ...
        digits = 9;
        break;
959
      case 'p':
960 961 962 963 964
        {
          int ampm = cal.get(Calendar.AM_PM);
          builder.append(syms.getAmPmStrings()[ampm]);
        }
        break;
965
      case 'z':
966 967 968 969 970 971 972 973 974
        {
          int zone = cal.get(Calendar.ZONE_OFFSET) / (1000 * 60);
          builder.append(zone);
          digits = 4;
          // Skip the '-' sign.
          if (zone < 0)
            ++oldLen;
        }
        break;
975
      case 'Z':
976 977 978 979 980 981 982
        {
          // FIXME: DST?
          int zone = cal.get(Calendar.ZONE_OFFSET) / (1000 * 60 * 60);
          String[][] zs = syms.getZoneStrings();
          builder.append(zs[zone + 12][1]);
        }
        break;
983
      case 's':
984 985 986 987 988
        {
          long val = cal.getTime().getTime();
          builder.append(val / 1000);
        }
        break;
989
      case 'Q':
990 991 992 993 994
        {
          long val = cal.getTime().getTime();
          builder.append(val);
        }
        break;
995
      case 'B':
996 997 998 999 1000
        {
          int month = cal.get(Calendar.MONTH);
          builder.append(syms.getMonths()[month]);
        }
        break;
1001 1002
      case 'b':
      case 'h':
1003 1004 1005 1006 1007
        {
          int month = cal.get(Calendar.MONTH);
          builder.append(syms.getShortMonths()[month]);
        }
        break;
1008
      case 'A':
1009 1010 1011 1012 1013
        {
          int day = cal.get(Calendar.DAY_OF_WEEK);
          builder.append(syms.getWeekdays()[day]);
        }
        break;
1014
      case 'a':
1015 1016 1017 1018 1019
        {
          int day = cal.get(Calendar.DAY_OF_WEEK);
          builder.append(syms.getShortWeekdays()[day]);
        }
        break;
1020
      case 'C':
1021 1022 1023
        builder.append(cal.get(Calendar.YEAR) / 100);
        digits = 2;
        break;
1024
      case 'Y':
1025 1026 1027
        builder.append(cal.get(Calendar.YEAR));
        digits = 4;
        break;
1028
      case 'y':
1029 1030 1031
        builder.append(cal.get(Calendar.YEAR) % 100);
        digits = 2;
        break;
1032
      case 'j':
1033 1034 1035
        builder.append(cal.get(Calendar.DAY_OF_YEAR));
        digits = 3;
        break;
1036
      case 'm':
1037 1038 1039
        builder.append(cal.get(Calendar.MONTH) + 1);
        digits = 2;
        break;
1040
      case 'd':
1041 1042 1043
        builder.append(cal.get(Calendar.DAY_OF_MONTH));
        digits = 2;
        break;
1044
      case 'e':
1045 1046
        builder.append(cal.get(Calendar.DAY_OF_MONTH));
        break;
1047
      case 'R':
1048 1049 1050 1051
        singleDateTimeConversion(builder, cal, 'H', syms);
        builder.append(':');
        singleDateTimeConversion(builder, cal, 'M', syms);
        break;
1052
      case 'T':
1053 1054 1055 1056 1057 1058
        singleDateTimeConversion(builder, cal, 'H', syms);
        builder.append(':');
        singleDateTimeConversion(builder, cal, 'M', syms);
        builder.append(':');
        singleDateTimeConversion(builder, cal, 'S', syms);
        break;
1059
      case 'r':
1060 1061 1062 1063 1064 1065 1066 1067
        singleDateTimeConversion(builder, cal, 'I', syms);
        builder.append(':');
        singleDateTimeConversion(builder, cal, 'M', syms);
        builder.append(':');
        singleDateTimeConversion(builder, cal, 'S', syms);
        builder.append(' ');
        singleDateTimeConversion(builder, cal, 'p', syms);
        break;
1068
      case 'D':
1069 1070 1071 1072 1073 1074
        singleDateTimeConversion(builder, cal, 'm', syms);
        builder.append('/');
        singleDateTimeConversion(builder, cal, 'd', syms);
        builder.append('/');
        singleDateTimeConversion(builder, cal, 'y', syms);
        break;
1075
      case 'F':
1076 1077 1078 1079 1080 1081
        singleDateTimeConversion(builder, cal, 'Y', syms);
        builder.append('-');
        singleDateTimeConversion(builder, cal, 'm', syms);
        builder.append('-');
        singleDateTimeConversion(builder, cal, 'd', syms);
        break;
1082
      case 'c':
1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094
        singleDateTimeConversion(builder, cal, 'a', syms);
        builder.append(' ');
        singleDateTimeConversion(builder, cal, 'b', syms);
        builder.append(' ');
        singleDateTimeConversion(builder, cal, 'd', syms);
        builder.append(' ');
        singleDateTimeConversion(builder, cal, 'T', syms);
        builder.append(' ');
        singleDateTimeConversion(builder, cal, 'Z', syms);
        builder.append(' ');
        singleDateTimeConversion(builder, cal, 'Y', syms);
        break;
1095
      default:
1096
        throw new UnknownFormatConversionException(String.valueOf(conversion));
1097 1098 1099 1100
      }

    if (digits > 0)
      {
1101 1102 1103 1104
        int newLen = builder.length();
        int delta = newLen - oldLen;
        while (delta++ < digits)
          builder.insert(oldLen, '0');
1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119
      }
  }

  /**
   * Emit a date or time value.
   *
   * @param arg the date or time value.
   * @param flags the formatting flags to use.
   * @param width the width to use.
   * @param precision the precision to use.
   * @param conversion the conversion character.
   * @param subConversion the sub conversion character.
   * @throws IOException if the output stream throws an I/O error.
   */
  private void dateTimeConversion(Object arg, int flags, int width,
1120 1121
                                  int precision, char conversion,
                                  char subConversion)
1122 1123 1124 1125
    throws IOException
  {
    noPrecision(precision);
    checkFlags(flags,
1126 1127
               FormattableFlags.LEFT_JUSTIFY | FormattableFlags.UPPERCASE,
               conversion);
1128 1129 1130 1131 1132 1133

    Calendar cal;
    if (arg instanceof Calendar)
      cal = (Calendar) arg;
    else
      {
1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146
        Date date;
        if (arg instanceof Date)
          date = (Date) arg;
        else if (arg instanceof Long)
          date = new Date(((Long) arg).longValue());
        else
          throw new IllegalFormatConversionException(conversion,
                                                     arg.getClass());
        if (fmtLocale == null)
          cal = Calendar.getInstance();
        else
          cal = Calendar.getInstance(fmtLocale);
        cal.setTime(date);
1147 1148 1149 1150 1151 1152 1153 1154 1155
      }

    // We could try to be more efficient by computing this lazily.
    DateFormatSymbols syms;
    if (fmtLocale == null)
      syms = new DateFormatSymbols();
    else
      syms = new DateFormatSymbols(fmtLocale);

1156
    CPStringBuilder result = new CPStringBuilder();
1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172
    singleDateTimeConversion(result, cal, subConversion, syms);

    genericFormat(result.toString(), flags, width, precision);
  }

  /**
   * Advance the internal parsing index, and throw an exception
   * on overrun.
   *
   * @throws IllegalArgumentException on overrun.
   */
  private void advance()
  {
    ++index;
    if (index >= length)
      {
1173 1174
        // FIXME: what exception here?
        throw new IllegalArgumentException();
1175 1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190
      }
  }

  /**
   * Parse an integer appearing in the format string.  Will return -1
   * if no integer was found.
   *
   * @return the parsed integer.
   */
  private int parseInt()
  {
    int start = index;
    while (Character.isDigit(format.charAt(index)))
      advance();
    if (start == index)
      return -1;
1191
    return Integer.parseInt(format.substring(start, index));
1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206
  }

  /**
   * Parse the argument index.  Returns -1 if there was no index, 0 if
   * we should re-use the previous index, and a positive integer to
   * indicate an absolute index.
   *
   * @return the parsed argument index.
   */
  private int parseArgumentIndex()
  {
    int result = -1;
    int start = index;
    if (format.charAt(index) == '<')
      {
1207 1208
        result = 0;
        advance();
1209 1210 1211
      }
    else if (Character.isDigit(format.charAt(index)))
      {
1212 1213 1214 1215 1216 1217 1218 1219 1220
        result = parseInt();
        if (format.charAt(index) == '$')
          advance();
        else
          {
            // Reset.
            index = start;
            result = -1;
          }
1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235 1236 1237
      }
    return result;
  }

  /**
   * Parse a set of flags and return a bit mask of values from
   * FormattableFlags.  Will throw an exception if a flag is
   * duplicated.
   *
   * @return the parsed flags.
   */
  private int parseFlags()
  {
    int value = 0;
    int start = index;
    while (true)
      {
1238 1239 1240 1241 1242 1243 1244 1245 1246
        int x = FLAGS.indexOf(format.charAt(index));
        if (x == -1)
          break;
        int newValue = 1 << x;
        if ((value & newValue) != 0)
          throw new DuplicateFormatFlagsException(format.substring(start,
                                                                   index + 1));
        value |= newValue;
        advance();
1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270 1271 1272 1273 1274 1275 1276 1277 1278 1279 1280 1281 1282 1283 1284 1285 1286 1287 1288 1289 1290 1291 1292 1293 1294 1295
      }
    return value;
  }

  /**
   * Parse the width part of a format string.  Returns -1 if no width
   * was specified.
   *
   * @return the parsed width.
   */
  private int parseWidth()
  {
    return parseInt();
  }

  /**
   * If the current character is '.', parses the precision part of a
   * format string.  Returns -1 if no precision was specified.
   *
   * @return the parsed precision.
   */
  private int parsePrecision()
  {
    if (format.charAt(index) != '.')
      return -1;
    advance();
    int precision = parseInt();
    if (precision == -1)
      // FIXME
      throw new IllegalArgumentException();
    return precision;
  }

  /**
   * Outputs a formatted string based on the supplied specification,
   * <code>fmt</code>, and its arguments using the specified locale.
   * The locale of the formatter does not change as a result; the
   * specified locale is just used for this particular formatting
   * operation.  If the locale is <code>null</code>, then no
   * localization is applied.
   *
   * @param loc the locale to use for this format.
   * @param fmt the format specification.
   * @param args the arguments to apply to the specification.
   * @throws IllegalFormatException if there is a problem with
   *                                the syntax of the format
   *                                specification or a mismatch
   *                                between it and the arguments.
   * @throws FormatterClosedException if the formatter is closed.
1296
   */
1297
  public Formatter format(Locale loc, String fmt, Object... args)
1298 1299 1300 1301 1302 1303 1304 1305 1306 1307
  {
    if (closed)
      throw new FormatterClosedException();

    // Note the arguments are indexed starting at 1.
    int implicitArgumentIndex = 1;
    int previousArgumentIndex = 0;

    try
      {
1308 1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331 1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352 1353 1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411 1412 1413 1414 1415 1416 1417 1418 1419
        fmtLocale = loc;
        format = fmt;
        length = format.length();
        for (index = 0; index < length; ++index)
          {
            char c = format.charAt(index);
            if (c != '%')
              {
                out.append(c);
                continue;
              }

            int start = index;
            advance();

            // We do the needed post-processing of this later, when we
            // determine whether an argument is actually needed by
            // this conversion.
            int argumentIndex = parseArgumentIndex();

            int flags = parseFlags();
            int width = parseWidth();
            int precision = parsePrecision();
            char origConversion = format.charAt(index);
            char conversion = origConversion;
            if (Character.isUpperCase(conversion))
              {
                flags |= FormattableFlags.UPPERCASE;
                conversion = Character.toLowerCase(conversion);
              }

            Object argument = null;
            if (conversion == '%' || conversion == 'n')
              {
                if (argumentIndex != -1)
                  {
                    // FIXME: not sure about this.
                    throw new UnknownFormatConversionException("FIXME");
                  }
              }
            else
              {
                if (argumentIndex == -1)
                  argumentIndex = implicitArgumentIndex++;
                else if (argumentIndex == 0)
                  argumentIndex = previousArgumentIndex;
                // Argument indices start at 1 but array indices at 0.
                --argumentIndex;
                if (argumentIndex < 0 || argumentIndex >= args.length)
                  throw new MissingFormatArgumentException(format.substring(start, index));
                argument = args[argumentIndex];
              }

            switch (conversion)
              {
              case 'b':
                booleanFormat(argument, flags, width, precision,
                              origConversion);
                break;
              case 'h':
                hashCodeFormat(argument, flags, width, precision,
                               origConversion);
                break;
              case 's':
                stringFormat(argument, flags, width, precision,
                             origConversion);
                break;
              case 'c':
                characterFormat(argument, flags, width, precision,
                                origConversion);
                break;
              case 'd':
                checkFlags(flags & FormattableFlags.UPPERCASE, 0, 'd');
                decimalConversion(argument, flags, width, precision,
                                  origConversion);
                break;
              case 'o':
                checkFlags(flags & FormattableFlags.UPPERCASE, 0, 'o');
                hexOrOctalConversion(argument, flags, width, precision, 8,
                                     origConversion);
                break;
              case 'x':
                hexOrOctalConversion(argument, flags, width, precision, 16,
                                     origConversion);
              case 'e':
                // scientificNotationConversion();
                break;
              case 'f':
                // floatingDecimalConversion();
                break;
              case 'g':
                // smartFloatingConversion();
                break;
              case 'a':
                // hexFloatingConversion();
                break;
              case 't':
                advance();
                char subConversion = format.charAt(index);
                dateTimeConversion(argument, flags, width, precision,
                                   origConversion, subConversion);
                break;
              case '%':
                percentFormat(flags, width, precision);
                break;
              case 'n':
                newLineFormat(flags, width, precision);
                break;
              default:
                throw new UnknownFormatConversionException(String.valueOf(origConversion));
              }
          }
1420 1421 1422
      }
    catch (IOException exc)
      {
1423
        ioException = exc;
1424 1425 1426 1427 1428 1429 1430 1431
      }
    return this;
  }

  /**
   * Outputs a formatted string based on the supplied specification,
   * <code>fmt</code>, and its arguments using the formatter's locale.
   *
1432
   * @param format the format specification.
1433 1434 1435 1436 1437 1438 1439
   * @param args the arguments to apply to the specification.
   * @throws IllegalFormatException if there is a problem with
   *                                the syntax of the format
   *                                specification or a mismatch
   *                                between it and the arguments.
   * @throws FormatterClosedException if the formatter is closed.
   */
1440
  public Formatter format(String format, Object... args)
1441 1442 1443 1444 1445 1446 1447 1448 1449 1450 1451 1452 1453 1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473 1474 1475
  {
    return format(locale, format, args);
  }

  /**
   * Returns the last I/O exception thrown by the
   * <code>append()</code> operation of the underlying
   * output stream.
   *
   * @return the last I/O exception.
   */
  public IOException ioException()
  {
    return ioException;
  }

  /**
   * Returns the locale used by this formatter.
   *
   * @return the formatter's locale.
   * @throws FormatterClosedException if the formatter is closed.
   */
  public Locale locale()
  {
    if (closed)
      throw new FormatterClosedException();
    return locale;
  }

  /**
   * Returns the output stream used by this formatter.
   *
   * @return the formatter's output stream.
   * @throws FormatterClosedException if the formatter is closed.
   */
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  public Appendable out()
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  {
    if (closed)
      throw new FormatterClosedException();
    return out;
  }

  /**
   * Returns the result of applying {@link Object#toString()}
   * to the underlying output stream.  The results returned
   * depend on the particular {@link Appendable} being used.
   * For example, a {@link StringBuilder} will return the
   * formatted output but an I/O stream will not.
   *
   * @throws FormatterClosedException if the formatter is closed.
   */
  public String toString()
  {
    if (closed)
      throw new FormatterClosedException();
    return out.toString();
  }
}