private void setSizesAndOffsetFromZip64Extra( final ZipEntry ze, final OffsetEntry offset, final int diskStart) throws IOException { final Zip64ExtendedInformationExtraField z64 = (Zip64ExtendedInformationExtraField) ze.getExtraField(Zip64ExtendedInformationExtraField.HEADER_ID); if (z64 != null) { final boolean hasUncompressedSize = ze.getSize() == 4294967295L; final boolean hasCompressedSize = ze.getCompressedSize() == 4294967295L; final boolean hasRelativeHeaderOffset = offset.headerOffset == 4294967295L; z64.reparseCentralDirectoryData( hasUncompressedSize, hasCompressedSize, hasRelativeHeaderOffset, diskStart == 65535); if (hasUncompressedSize) { ze.setSize(z64.getSize().getLongValue()); } else if (hasCompressedSize) { z64.setSize(new ZipEightByteInteger(ze.getSize())); } if (hasCompressedSize) { ze.setCompressedSize(z64.getCompressedSize().getLongValue()); } else if (hasUncompressedSize) { z64.setCompressedSize(new ZipEightByteInteger(ze.getCompressedSize())); } if (hasRelativeHeaderOffset) { offset.headerOffset = z64.getRelativeHeaderOffset().getLongValue(); } } }
public InputStream getInputStream(final ZipEntry ze) throws IOException, ZipException { if (!(ze instanceof Entry)) { return null; } final OffsetEntry offsetEntry = ((Entry) ze).getOffsetEntry(); ZipUtil.checkRequestedFeatures(ze); final long start = offsetEntry.dataOffset; final BoundedInputStream bis = new BoundedInputStream(start, ze.getCompressedSize()); switch (ze.getMethod()) { case 0: { return bis; } case 8: { bis.addDummy(); final Inflater inflater = new Inflater(true); return new InflaterInputStream(bis, inflater) { public void close() throws IOException { super.close(); inflater.end(); } }; } default: { throw new ZipException("Found unsupported compression method " + ze.getMethod()); } } }
/** * Returns the entries of an archive. * * @param ctx query context * @return entries * @throws QueryException query exception */ private Iter entries(final QueryContext ctx) throws QueryException { final B64 archive = (B64) checkType(checkItem(expr[0], ctx), AtomType.B64); final ValueBuilder vb = new ValueBuilder(); final ArchiveIn in = ArchiveIn.get(archive.input(info), info); try { while (in.more()) { final ZipEntry ze = in.entry(); if (ze.isDirectory()) continue; final FElem e = new FElem(Q_ENTRY, NS); long s = ze.getSize(); if (s != -1) e.add(Q_SIZE, token(s)); s = ze.getTime(); if (s != -1) e.add(Q_LAST_MOD, new Dtm(s, info).string(info)); s = ze.getCompressedSize(); if (s != -1) e.add(Q_COMP_SIZE, token(s)); e.add(ze.getName()); vb.add(e); } return vb; } catch (final IOException ex) { Util.debug(ex); throw ARCH_FAIL.thrw(info, ex); } finally { in.close(); } }
/** Adds a new file entry to the ZIP output stream. */ void addFile(ZipOutputStream zos, File file) throws IOException { String name = file.getPath(); boolean isDir = file.isDirectory(); if (isDir) { name = name.endsWith(File.separator) ? name : (name + File.separator); } name = entryName(name); if (name.equals("") || name.equals(".") || name.equals(zname)) { return; } else if ((name.equals(MANIFEST_DIR) || name.equals(MANIFEST_NAME)) && !Mflag) { if (vflag) { output(formatMsg("out.ignore.entry", name)); } return; } long size = isDir ? 0 : file.length(); if (vflag) { out.print(formatMsg("out.adding", name)); } ZipEntry e = new ZipEntry(name); e.setTime(file.lastModified()); if (size == 0) { e.setMethod(ZipEntry.STORED); e.setSize(0); e.setCrc(0); } else if (flag0) { crc32File(e, file); } zos.putNextEntry(e); if (!isDir) { copy(file, zos); } zos.closeEntry(); /* report how much compression occurred. */ if (vflag) { size = e.getSize(); long csize = e.getCompressedSize(); out.print(formatMsg2("out.size", String.valueOf(size), String.valueOf(csize))); if (e.getMethod() == ZipEntry.DEFLATED) { long ratio = 0; if (size != 0) { ratio = ((size - csize) * 100) / size; } output(formatMsg("out.deflated", String.valueOf(ratio))); } else { output(getMsg("out.stored")); } } }
/** * Dumps a zip entry into a string. * * @param ze a ZipEntry */ private String dumpZipEntry(ZipEntry ze) { StringBuffer sb = new StringBuffer(); if (ze.isDirectory()) { sb.append("d "); } else { sb.append("f "); } if (ze.getMethod() == ZipEntry.STORED) { sb.append("stored "); } else { sb.append("defalted "); } sb.append(ze.getName()); sb.append("\t"); sb.append("" + ze.getSize()); if (ze.getMethod() == ZipEntry.DEFLATED) { sb.append("/" + ze.getCompressedSize()); } return (sb.toString()); }
/** initializes internal hash tables with Jar file resources. */ private byte[] read(String name) { try { // extracts just sizes only. ZipFile zf = new ZipFile(jarFileName); Enumeration e = zf.entries(); while (e.hasMoreElements()) { ZipEntry ze = (ZipEntry) e.nextElement(); if (debugOn) { System.out.println(dumpZipEntry(ze)); } htSizes.put(ze.getName(), new Integer((int) ze.getSize())); } zf.close(); // extract resources and put them into the hashtable. FileInputStream fis = new FileInputStream(jarFileName); BufferedInputStream bis = new BufferedInputStream(fis); ZipInputStream zis = new ZipInputStream(bis); ZipEntry ze = null; while ((ze = zis.getNextEntry()) != null) { if (ze.isDirectory()) { continue; } if (debugOn) { System.out.println("ze.getName()=" + ze.getName() + "," + "getSize()=" + ze.getSize()); } int size = (int) ze.getSize(); // -1 means unknown size. if (size == -1) { size = ((Integer) htSizes.get(ze.getName())).intValue(); } byte[] b = new byte[(int) size]; int rb = 0; int chunk = 0; while (((int) size - rb) > 0) { chunk = zis.read(b, rb, (int) size - rb); if (chunk == -1) { break; } rb += chunk; } if (debugOn) { System.out.println( ze.getName() + " rb=" + rb + ",size=" + size + ",csize=" + ze.getCompressedSize()); } if (ze.getName().equals(name)) { return b; } } } catch (NullPointerException e) { System.out.println("done."); } catch (FileNotFoundException e) { e.printStackTrace(); } catch (IOException e) { e.printStackTrace(); } return null; }
// =============================================================================